• 薛晨阳

    职称职务:教授

    电子邮箱:

    办公地址:

    办公电话:

    教育工作经历:

    1999/09-2003/09:希腊雅典国立科技大学物理系半导体材料专业,博士学位;

    2008/08-2009/02:英国牛津大学工程系,高级访问学者;

    2011/05-2011/11:美国麻省理工学院微系统实验室,高级访问学者;

    2018/12-2019/6:美国加州大学伯克利分校,高级访问学者;

    2018/04-至今:中北大学,仪器科学与动态测试教育部重点实验室,主任。


    研究方向:

    1.  海洋传感器与仪器;

    2.  医用传感器与仪器;

    3.  航空航天燃烧场测试技术。


    技术成果(近10年代表性成果):

    1.Hai, ZY; Akbari, MK; Wei, ZH; Zuallaert, J; De Neve, W; Xue, CY; Xu, HY; Verpoort, F; Zhuiykov, S. Electrochromic Photodetectors: Toward Smarter Glasses and Nano Reflective Displays via an Electrolytic Mechanism[J]. Acs Applied Materials & Interfaces. 2019, 11(31):27997-28004.(SCI)

    2.Liu, C; Zhang, BZ ; Xue, CY ; Zhang, WD ; Zhang, GJ ; Cheng, YJ; Multi-Perspective Ultrasound Imaging Technology of the Breast with Cylindrical Motion of Linear Arrays[J].Applied Sciences-Basel,9(3).(SCI)

    3.Liu, C; Zhang, BZ ; Xue, CY ; Zhang, GJ ; Zhang, WD ; Cheng, YJ. The Application of Adaptive Time Gain Compensation in an Improved Breast Ultrasound Tomography Algorithm[J]. Applied Sciences-Basel, 9(12).(SCI)

    4.Cui, DF; Li, YF; Chen, Y; Li, YK; Hai, ZY ; Xu, HY; Xue, CY; Synthesis of CoTiO3 nanoparticles with enhanced photocatalytic degradation[J]. Micro & Nano Letters, 2019, 14(8):840-844.(SCI)

    5.Hao, CC ; He, J ; Zhai, C; Jia, W; Song, LL; Cho, JD; Chou, XJ ; Xue, CY. Two-dimensional triboelectric-electromagnetic hybrid nanogenerator for wave energy harvesting[J]. Nano Energy 2019, 58:147-157 .(SCI)

    6.Chen X, He J, Song L, Zhang Z, Tian Z, Wen T, Zhai C, Chen Y, Cho J, Chou X, Xue C, Flexible one-structure arched triboelectric nanogenerator based on common electrode for high efficiency energy harvesting and self-powered motion sensing[J]. Aip Advance, 2018,8(4).(SCI)

    7.Liu C, Xue C, Zhang B, Zhang G, He C, The Application of an Ultrasound Tomography Algorithm in a Novel Ring 3D Ultrasound Imaging System[J]. Sensors, 2018, 18(5), 1332.(SCI)

    8.Zhai C, Chou X, He J, Song L, Zhang Z, Wen T, Tian Z, Chen X, Zhang W, Niu Z, Xue C, An electrostatic discharge based needle-to-needle booster for dramatic performance enhancement of triboelectric nanogenerators[J]. Applied Energy, 2018, 231:1346-1353.(SCI)

    9.Chen Y, Li Y, Hai Z, Li Y, Kan S, Chen J, Chen X, Zhuiykov S, Cui D, Xue C, Facile-synthesized NiCo2O4@MnMoO4 with novel and functional structure for superior performance supercapacitors[J]. Applied Surface Science. 2018, 452:413-422.(SCI)

    10.Li Y, Hou X, Zhang Z, Hai Z, Xu H, Cui D, Zhuiykov Serge, Xue C, NiCo2O4 particles with diamond-shaped hexahedron structure for high-performance supercapacitors[J]. Applied Surface Science. 2018, 436:242-251.(SCI)

    11.Wen T, He J, Zhang Z, Tian Z, Mu J, Han J, Chou X, Xue C, Electromagnetic-triboeletric hybridized generator based on magnetic levitation for scavenging biomechanical energy[J]. Acta Physica Sinica. 2017, 66 (22).(SCI)

    12.Li Y, Hai Z, Hou X, Xu H, Zhang Z, Cui D, Xue C, Zhang B. Self-assembly of 3d fennel-like co3o4 with thirty-six surfaces for high performance supercapacitor[J]. Journal of Nanomaterials, 2017, (2017-3-7), 70(4), 295.(SCI)

    13.Zhang Z, He J, Wen T, Zhai C, Han J, Wen T, Zhai C, Han J, Mu J, Jia W , Zhang B, Zhang W, Chou X, Xue C. Magnetically levitated-triboelectric nanogenerator as a self-powered vibration monitoring sensor[J]. Nano Energy, 2017, 33:88-97. (SCI)

    14.Zhang Z, Jian H, Han J, Xu H, Mu J, Wen T, Wang D, Tian Z , Chen Z, Xue C. Magnetically levitated/piezoelectric/triboelectric hybrid generator as a power supply for the temperature sensor[J]. Science China Technological Sciences, 2017, 60(7):1-7.(SCI)

    15.Tian Z, He J, Chen X, Zhang Z, Wen T, Zhai C, Han J, Mu J, Hou X, Chou X, Xue, C. Performance-Boosted Triboelectric Textile for Harvesting Human Motion Energy[J]. Nano Energy, 2017, 39.(SCI)

    16.Hai Z, Gao, L, Zhang Q, Xu H, Cui D, Zhang Z, Tsoukalas D, Tang J, Yan S, Xue C. Facile synthesis of core–shell structured PANI-Co3O4 nanocomposites with superior electrochemical performance in supercapacitors[J]. Applied Surface Science, 2016, 361: 57-62. (SCI)

    17.Tong X, Hai Z, Cui D, Gao L, Zhang Q, Xu H, Xu H, Ma Y, Xue C. Investigation of lattice distortion of Co3O4 nanoparticles prepared by a carbon-assisted method[J]. Microelectronic Engineering, 2016, 159: 17-20.(SCI)

    18.Wang Y., Xue C, Zhang Z, Zheng H, Zhang W, Yan S. Tunable optical analog to electromagnetically induced transparency in graphene-ring resonators system[J]. Scientific reports, 2016, 6: 38891.(SCI)

    19.Zhang Q, Hai Z, Jian A, Xu H, Xue C, Sang S. Synthesis of p-Co3O4/n-TiO2 nanoparticles for overall water splitting under visible light irradiation[J].   Nanomaterials, 2016, 6(8): 138.(SCI)

    20.Xu, HY; Hai, ZY; Diwu, JT; Zhang, Q; Gao, LB; Cui, DF; Zang, JB; Liu, J; Xue, CY. Synthesis and microwave absorption properties of core-shell structured co3o-pani nanocomposites[J]. Journal of Nanomaterials, 2015(5), 1-8.(SCI)

    21.Xue C; Li J; Zhang Q; Zhang Z; Hai Z; Gao L., Feng R; Tang J; Liu J; Zhang W; Sun D. A novel arch-shape nanogenerator based on piezoelectric and triboelectric mechanism for mechanical energy harvesting[J]. Nanomaterials, 2014, 5(1): 36-46.(SCI)

    22.Xu, H; Gao, L; Zhang, Q; Li, J; Diwu, J; Chou, X; Tang, J; Xue, C. Preparation method of Co3O4 nanoparticles using degreasing cotton and their electrochemical performances in supercapacitors[J]. Journal of Nanomaterials, 2014(2), 1-9. (SCI)

    23.Qiang, Z., Li, J., Yuan, Y., Gao, L., Xue, C. Micro double tapered optical fiber sensors based on the evanescent field-effect and surface modification[J]. Optik-International Journal for Light and Electron Optics, 2014, 125(17): 4614-4617.(SCI)

    24.Libo Gao, Qiang Zhang, Junyang Li, Ruiting Feng, Hongyan Xu, & Chenyang Xue. Adsorption of methyl orange on magnetically separable mesoporous titania nanocomposite[J]. Chinese Journal of Chemical Engineering, 2014, 22(10): 1168-1173.(SCI)

    25.Xue C, Zheng L, Zhang W, Zhang B, Jian A. A dynamic stress analyzer for microelectromechanical systems (MEMS) based on Raman spectroscopy[J]. Journal of Raman Spectroscopy, 2010, 38(4):467-471.(SCI)

    26.Xue C, Tan Z, Shi W, Liu J, Zhang B, Xiong J, Zhang W. The Effect of Drain/Gate Bias on Electromechanical Coupling Effect in Accelerometer Based on MESFET[J]. IEEE Sensors Journal, 2010, 11(2):384-388.(SCI)



    科研项目:

    1、高功率密度微纳振动能量收集器技术及矿井装备智能化应用研究,国家重点研发计划,2020.1-2022.12,1229万元,在研;

    2、基于MEMS技术的全海深湍流混合矩阵式剖面观测仪器研究,国家自然科学基金仪器专项,2018.1-2022.12,867.57万元,在研;

    3、微纳米传感器原理与集成,国家杰出青年科学基金,2016.1-2020.12,400万元,在研;

    4、XXXXXX参数获取与测量技术,“十三五”装备预研共用技术项目,装备预研项目,2019-2020,280万元,在研;

    5、基于MEMS技术的心电、心 音原位同步智能监测仪研发,阳煤集团民口横向项目,2019.3-2019.12,651万元,在研;

    6、2016-三晋学者,山西省人才项目,2016.1-2020.12,200万元,在研;

    7、基于纳机电矢量水听器面阵的水下目标成像机理与技术研究,国家自然科学基金委,国家重大科研仪器研制项目,2012.1-2015.12,80万元,结题;

    8、XXX三维纳机电矢量水听器,总装,2012-2014,100万元,结题;

    9、面向重型采煤机械在线状态监测的微纳系统三维异质集成技术,国家科技部,国家863计划项目,2015.3-2018.3,3757万元,结题。


  • 郑永秋

    职称职务:教授

    电子邮箱:zhengyongqiu@nuc.edu.cn

    办公地址:

    办公电话:15364518896

    教育工作经历:

    2011.09——2015.07  中北大学  测试计量技术及仪器专业  博士

    2009.09——2012.07  中北大学  电路与系统专业          硕士

    2005.09——2009.07  中北大学  电子科学与技术专业      本科


    研究方向:

    高温高压光学MEMS传感器件,高Q值微腔传感测试,数据采集与存储,复杂环境振动微能源采集与应用


    技术成果(近10年代表性成果):

    [1] Ru Wang, Juan Cui, Yabing Liu, Dan Liu, Chunhui Du, Shubin Yan, Yongqiu Zheng, Chenyang Xue. Multi-pulse triboelectric nanogenerator based on micro-gap corona discharge for enhancement of output performance, Energy, 2022, 244: 122588.(通讯作者)

    [2] Jiamin Chen, Chenyang Xue, Yongqiu Zheng,* Liyun Wu, Chen Chen, and Yuan Han, Micro-fiber-optic acoustic sensor based on high-Q resonance effect using Fabry-Perot etalon, Optics Express, 2021, 29(11): 16447-16454.(通讯作者)

    [3] JIAMIN CHEN, YONGQIU ZHENG,* CHENYANG XUE, CHENGFEI ZHANG, AND YI CHEN. Filtering effect of SiO2 optical waveguide ring resonator applied to optoelectronic oscillator, Optics Express, 2018, 26(10): 12638-12647.(通讯作者)

    [4] Chen Chen, Yongqiu Zheng,* Jiamin Chen, Liyun Wu, Xinyu Zhao, Chenyang Xue. Full investigation of frequency locking loop model for high-Q Fabry-Perot cavity acoustic sensor, Optics and Laser Technology, 2021, 139: 106976.(通讯作者)

    [5] Zerong Jia, Jiamin Chen, Yongqiu Zheng, Chen Chen, Liyun Wu, Jiandong Bai, Chenyang Xue. High-finesse frequency tunability of optoelectronic oscillator based on SiO2 optical waveguide ring resonator with the frequency locking technology, Optics Communications, 2021, 498: 127236.(通讯作者)

    [6] Liyun Wu, Yongqiu Zheng*, Chenyang Xue, Jiandong Bai, Jiamin Chen. An Optical Acoustic Detection System Based on Fabry Pérot Etalon Stability Structure, Micromachines, 2021, 12: 1564. (通讯作者)

    [7] Jiamin Chen, Chenyang Xue, Yongqiu Zheng*, Jiandong Bai, Xinyu Zhao, Liyun Wu, Yuan Han. Acoustic Performance Study of Fiber-Optic Acoustic Sensors Based on Fabry-Pérot Etalons with Different Q Factors, Micromachines, 2022, 13: 118.(通讯作者)

    [8] Jiamin Chen, Chenyang Xue, Yongqiu Zheng, Jiandong Bai, Xinyu Zhao, Chen Chen, Liyun Wu, and Yuan Han. Fiber-Optic Acoustic Sensor for Flexibility and Universality Applications Adopting Phase Modulation Spectroscopy, IEEE SENSORS JOURNAL, 2021, 21(19): 21631-21637.(通讯作者)

    [9] Yongqiu Zheng, Yongfeng Ren, Panlong An, Chengqun Chu, Xiaofeng Li, Chenyang Xue, Jun Liu, and Shubin Yan. Wide dynamic range experiments on a resonator fiber optic gyro based on closed-loop frequency locking technique. CHINESE OPTICS LETTERS, 13(2), 020601(2015).

    [10] Ruoshui Tan, Chen Chen, Yongqiu Zheng,* Jiamin Chen, Liyun Wu. High-precision calibration method for fiber Bragg grating strain sensing based on an optical lever, Optical Fiber Technology, 2021, 61: 102392. (通讯作者)


    科研项目:

    1. 国家自然科学基金委员会,重点项目,62131018,高温高压等极端和复杂条件下热-声-振原位微纳传感器研究,2022-01至2026-12,307万元,在研,主持

    2. 中央军委科技委,173计划重点基金,2021-JCJQ-JJ-0393,XX多参数智能感知与健康智能管理,2021-10至2024-10,200万元,在研,主持

    3. KGJ基础科研项目,XX快速多光谱的固体推进剂燃烧特性测试技术研究,2021-01至2023-12,1000万元,在研,参加(分承研单位负责人,400万元)

    4 国家自然科学基金青年科学基金项目,61704160,硅基高Q值微谐振腔光电振荡器的基础研究,2018/01-2020/12,25万元,已结题,主持

    5. 国家重点研发计划课题项目,2019YFB2004804,智能低功耗能源管理与示范应用,2020/01-2022/12,248万元,在研,主持

    6. 山西省科学技术厅,优秀青年基金,高动态燃烧场多参数光谱与原位传感融合的精细化测试方法研究,2022-01至2024-12,20万元,在研,主持

    7. 装备发展部预研基金,61404140403,微波光子器件宽频段高分辨自校准测试技术,2019/01-2020/12,50万元,已结题,主持

    8. 装备发展部预研基金,61400030302,超宽频带高灵敏度声信号测试技术,2018/01-2019/12,50万元,已结题,主持

    9. 山西省青年科技研究基金面上项目,201801D221214,基于光学微腔声光耦合效应的宽频带高灵敏度声传感器件的基础研究,2018/12-2020/12,3万元,在研,主持

    10. 山西省教育厅,高等学校科技创新项目,2020L0276,全固态MEMS光学超高声压噪声传感器件与测试技术,3万元,2020-04至2022-03,在研,主持

    11. 中北大学青年学术带头人支持计划,QX201804,基于高Q值微腔的宽频高灵敏度声传感器,2018/12-2020/11,5万元,已结题,主持

    12. 北京空间飞行器总体设计部,501-O1-2019-0754,多源阵列传感器网络及智能传感器海量数据采集与记录管理系统,2019-11至2020-12,50万元,已结题,主持


  • 张志东

    职称职务:教授 博导

    电子邮箱:zdzhang@nuc.edu.cn

    办公地址:

    办公电话:13934575219

    教育工作经历:

    2014/06-至今,中北大学,仪器与电子学院 

    2014/06-2009/09,西南交通大学,博士


    研究方向:

    医用传感器及医疗仪器系统,医疗大数据、深度学习;


    技术成果(近10年代表性成果):

    成果简介:

    近年来,主持研制了智能中医四诊仪、智能艾灸机器人、雷火灸温度监测仪、智能脐灸仪、中药方剂分析系统、中医慢病管理系统等项目,主持省级/国级科研项目5项,发表SCI论文80余篇,其中1篇被ESI高被引收录,申请国家发明专利50余项,授权国家发明专利20项。指导学生竞赛获奖20余项,或国级竞赛一等奖2次。获得2022年第十六届CIMC“西门子杯”中国智能制造挑战赛年度优秀指导教师称号、获得2023年第十一届全国大学生数字媒体科技作品及创意竞赛优秀指导教师称号、第五届全国大学生集成电路创新创业大赛优秀指导教师称号。2019年被评为仪器与电子学院第六届教师“创新达人”,2019年入选“三晋英才”,优秀青年人才,2022年获得山西省自然科学二等奖


    论文发表:

    (1) Zhidong Zhang, Yuhang Ma,Yuetang Li, Bo Li, Xiyuan Cao, Dong Guo, Jiuzhang Men, Chenyang Xue, Pulse Wave Measuring Sensor System via the Average Magnitude Difference Function Entropy for Classifying Cardiac Conditions, IEEE Sensors Journal, 2023, 23,(11):12190.

    (2) Zhang Zhidong, Zhu Xiaolong, Cao Xiyuan, Li Bo, Zang Junbin, Guo Dong, Men Jiuzhang, Xue Chenyang, Advances in Tongue Diagnosis Objectification of Traditional Chinese Medicine, doi:10.15878/j.cnki.instrumentation.2023.01.001

    (3) Zhidong Zhang, Qingchao Zhang, Huinan Zhang, Bo Li, Junbin Zang, Xuefeng Zhao, Xiaolong Zhao, Chenyang Xue, A novel MXene-based high-performance flexible pressure sensor for detection of human motion, Smart Materials and Structures, 2023,32,065007

    (4) Zhidong Zhang, Qingchao Zhang, Bo Li, Junbin Zang, Xiyuan Cao, Xiaolong Zhao, Chenyang Xue, Double Fano Resonance and Independent Regulation Characteristics in a Rectangular-like Nanotetramer Metasurface Structure,Nanomaterials 2022, 12(19), 3479

    (5) Zhi-Dong Zhang, Xue-Feng Zhao, Qing-Chao Zhang, Jie Liang, Hui-Nan Zhang, Tian-Sheng Zhang, Chen-Yang Xue, Fully sprayed MXene-based high-performance flexible piezoresistive sensor for image recognition, https://doi.org/10.1016/j.nanoms.2023.06.001

    (6) Yuhang Ma; Yunlong Zhao; Lu Liu; Ruiyu Bi; Xiaolong Zhu; Junbin Zang; Dong Guo; Jiuzhang Men; Zhidong Zhang(通讯作者); Chenyang Xue(通讯作者) ; Pulse Wave Measuring via Fingertip-Like Sensor to Analyze and Identify Pulse-Rate Status, IEEE Sensors Journal, 2023, 23(3): 3147-3158

    (7) Ruiyu Bi; Yunlong Zhao; Yuhang Ma; Xiaolong Zhu; Jiawei Li; Bin Wu; Junbin Zang; Jiuzhang Men; Zhidong Zhang(通讯作者); Chenyang Xue(通讯作者) ; Research of pulse position based on gradient pressure method, Biomedical Signal Processing and Control, 2022, 80: 104372-104372

    (8) Xiaolong Zhu; Yuhang Ma; Dong Guo; Jiuzhang Men; Chenyang Xue; Xiyuan Cao; Zhidong Zhang(通讯作者) ; A Framework to Predict Gastric Cancer Based on Tongue Features and Deep Learning, Micromachines, 2022, 14(1): 53

    (9) Jiawei Li; Zhidong Zhang(通讯作者); Xiaolong Zhu; Yunlong Zhao; Yuhang Ma; Junbin Zang; Bo Li; Xiyuan Cao; Chenyang Xue,Automatic Classification Framework of Tongue Feature Based on Convolutional Neural Networks, Micromachines, 2022, 13(4): 501

    (10) Zhang Zhidong, Zhang Huinan, Liang Jie, Ge Haixia, Liu Yan-li, Zhu Xu-peng, Double Fano resonance and refractive index sensors based on parallel-arranged Au nanorod dimer metasurface arrays, Chinese Optics, 2023, 16(4): 961-971


    获奖:

    张志东(1/5); 面向分子微弱光谱信号检测的表面等离激元增强机理及调控方法研究, 山西省科学技术奖励委员会, 自然科学, 省部二等奖, 2023(张志东; 张中月; 王勇凯; 薛晨阳; 闫树斌) (科研奖励)


    科研项目:

    (1) 山西省中医药管理局, 中医药强省专项, 晋卫中医药函[2023]4号, 基于名中医的中医诊疗设备研发, 2021-01 至 2023-12, 300万元, 结题, 主持

    (2) x委xx委, xxx工程, xxxxxx, xxx复杂条件下xxx原位传感器研究, 2022-06 至 2023-05, 300万元, 结题, 主持

    (3) 山西省针灸医院, 横向, 22110600025HX, 山西省针灸医院智能艾灸机器人技术服务采购项目, 2021- 12 至 2022-12, 29.95万元, 结题, 主持

    (4) 山西省教育厅, 山西省高等学校创新项目, 2020L0275, 仿中医诊脉指法的脉搏波提取技术研究, 2020-04 至 2022-03, 3万元, 结题, 主持

     (5) 国防科技工业局, 稳定支持项目, KWD200407, 基于FP腔声光耦合的xxxx参数测试技术, 2020-01 至 2021-12, 208万元, 结题, 主持

     (6) 山西省科技厅, 基础研究项目, 201801D221212, 基于石墨烯-贵金属-石墨烯复合超结构的光电探测技 术研究, 2018-12 至 2020-12, 3万元, 结题, 主持

     (7) 阳泉煤业集团有限公司(现改名为:华阳新材料科技集团有限公司), 横向项目, 2010600190HX, 高 速无失真心电、心音信号同步采集技术研究, 2019-01 至 2020-12, 110万元, 结题, 主持

     (8) 国家自然科学基金(青年项目),基于金属微纳超结构的MEMS红外辐射光源的调控研究,2017.01-2019.12主持25万


  • 崔丹凤

    职称职务:副教授

    电子邮箱:cuidanfeng@nuc.edu.cn

    办公地址:

    办公电话:15135165087

    教育工作经历:

    2009.09-2014.06,硕博连读,测试计量技术及仪器专业,中北大学电子测试技术国防科技重点实验室、中北大学仪器与电子学院

    2005.09-2009.07,本科,电子信息工程专业,中北大学信息与通信工程学院


    研究方向:

    光催化,超级电容,微纳加工制造


    技术成果(近10年代表性成果):

    1)Danfeng Cui, Yanfang Li, Yi Chen, Yuankai Li, Hongyan Xu, Chenyang Xue. MnMoO4@Co3O4 Nanorod Clusters for Superior Capacitance of Supercapacitors [J]. International Journal of Electrochemical Science, 15: 2776-2791.

    2)Danfeng Cui, Yanfang Li, Yi Chen, Yuankai Li, Zhenyin Hai, Hongyan Xu, Chenyang Xue. Synthesis of CoTiO3 nanoparticles with enhanced photocatalytic degradation [J]. Micro& Nano Letters, 2019, 14(8): 840-844.

    3)Danfeng Cui, Chenyang Xue, et al. “Induced-transparency in silicon-on -insulator based novel resonator systems”. Micro&Nano Letters, 2013, 8(10):619-622.

    4)Danfeng Cui, Chenyang Xue, et al. “Experimental demonstration of induced-transparency based novel resonator systems”. Optics Communications, 324:296-300, 2014.

    5)崔丹凤,薛晨阳等. 一种新型四环谐振腔结构中的耦合诱导透明特性研究[J],光子学报,43(1),2014.


    科研项目:

    (1)山西省青年科学基金,201801D221197,基于固态电解质薄膜的全固态锂离子电池关键技术研究,2018/12-2020/12,3万元,已结题,主持;

    (2)总装备部重点实验室基金,2010600207JZ,基于振动微能量XXXX研究,2019/1-2020/12,20万元,已结题,主持;

    (3)国家重点研发计划重点专项项目,2021/1-2023/9,硅基MEMS压电薄膜及器件关键技术与平台,103万元,在研,参与;


  • 管今哥

    职称职务:副教授

    电子邮箱:jgguan@nuc.edu.cn

    办公地址:

    办公电话:15135186330

    教育工作经历:

    2005年09月-2009年06月,聊城大学,物理学专业,学士

    2010年09月-2016年06月,西安交通大学,电子科学与技术,博士



    研究方向:

    光谱诊断技术,包括强散射介质光谱成像技术,燃烧场温度与组分光谱测试技术


    技术成果(近10年代表性成果):

    (1)GUAN Jin-ge, ZHAO Yong, ZHENG Yong-qiu, MA Miao, SUN Peng, XUE Chen-yang, Optical polarization imaging for underwater target detection with non-scatter background, Journal of Measurement Science and Instrumentation, 2020, 11(4): 335-342.

    (2)Guan Jinge, Ma Miao, Sun Peng, Optimization of rotating orthogonal polarization imaging in turbid media via the Mueller matrix, Optics and Lasers in Engineering, 2019, 121: 104-111.

    (3)Ren Wei, Guan Jinge, Liu Jiahang, Chen Junyu, Feng Xiaoshan, Range-gated imaging in turbid conditions using a combination of intensity and polarization information, Physica Scripta, 2019, 94(10): 0-105505.

    (4)Guan Jinge, Ren Wei, Cheng Yaoyu, Stokes vector based interpolation method to improve the efficiency of bio-inspired polarization-difference imaging in turbid media , Journal of Physics D: Applied Physics, 2018, 51(14): 0-145402.

    (5)Guan Jinge, Cheng Yaoyu, Chang Guoli, Time-domain polarization difference imaging of objects in turbid water, Optics Communications, 2017, 391: 82-87.


    科研项目:

    (1)国家自然科学基金青年基金项目,不稳定燃烧中基于空间波长联合滤波技术的高光谱三维测温方法研究,24万,2021年1月1日-2023年12月30日,主持;

    (2)国防基础科研计划项目,基于时空频率复合滤波快速多光谱***研究,400万,2021年1月1日-2023年12月30日,参与。


  • 刘丹

    职称职务:教授

    电子邮箱:liudan235@nuc.edu.cn

    办公地址:

    办公电话:18234009946

    教育工作经历:

    2015/09-2019/09,西安交通大学,电子科学与技术,博士

    2018/09-2019/08,加拿大,Simon Fraser University 化学系,公派联合培养博士

    2011/09-2014/07,太原理工大学,物理电子学,硕士

    2007/09-2011/07,长治学院,物理学,学士


    研究方向:

    微能源采集与传感、MEMS传感器


    技术成果(近10年代表性成果):

    1. Zhuqing Yan, Yaxin Zhao, Dan Liu (通信作者), Zhidong Zhang, Yongqiu Zheng, Juan Cui, Yanjun Zhang (通信作者), Chenyang Xue. Thermoelectric properties of flexible PEDOT:PSS-based films tuned by SnSe via the vacuum filtration method. RSC Advances, 2020, 10: 43840.

    2. Dan Liu, Peng Shi, Wei Ren, et al. A new kind of thermocouple made of p-type and n-type semi-conductive oxides with giant thermoelectric voltage for high temperature sensing, J. Mater. Chem. C. 2018, 6: 3206–3211.

    3. Dan Liu, Peng Shi, Wei Ren, et al. Facile high-performance film thermocouple made of strontium lanthanum chromate for temperature sensing in air, J. Am. Ceram. Soc. 2018, 101: 4880-4886.

    4. Dan Liu, Peng Shi, Wei Ren, et al. Investigation on thermoelectric properties of screen-printed La1-xSrxCrO3-In2O3 thermocouples for high temperature sensing, J. Eur. Ceram. Soc. 2018, 38: 5030-5035.

    5. Dan Liu, Peng Shi, Wei Ren, et al. Enhanced La0.8Sr0.2CrO3/Pt thin flm thermocouple with Al2O3 coating layer for high temperature sensing, Ceram. Int. 2018, 44: s233-237.

    6. Dan Liu, Peng Shi, Wei Ren, et al. Fabrication and characterization of La0.8Sr0.2CrO3/In2O3 thin film thermocouple for high temperature sensing, Sensor. Actuat. A-Phys. 2018, 280: 459-465.

    7. Junzhan Zhang, Weichao Wang, Dan Liu, et al. Structural and electric response of ITO/In2O3 transparent thin film thermocouples derived from RF sputtering at room temperature, J. Mater. Sci.-Mater. El. 2018, 29(23): 20253-20259.

    8. Yantao Liu, Wei Ren, Peng Shi, Dan Liu, et al. A Highly Thermostable In2O3/ITO Thin Film Thermocouple Prepared via Screen Printing for High Temperature Measurements, Sensors 2018, 18(4): 958.

    9. Yantao Liu, Wei Ren, Peng Shi, Dan Liu, et al. Preparation and thermal volatility characteristics of In2O3/ITO thin film thermocouple by RF magnetron sputtering, AIP adv. 2017, 7: 115025.

    10. Yantao Liu, Wei Ren, Peng Shi, Dan Liu, et al. Microstructure and thermoelectric properties of In2O3/ITO thin film thermocouples with Al2O3 protecting layer, J. Mater. Sci.-Mater. El. 2019, 30(2): 1786-1793.

    11. Dan Liu, Cai’e Cui, Ping Huang, et al. Luminescent properties of red long-lasting phosphor Y2O2S:Eu3+, M2+ (M = Mg, Ca, Sr, Ba), Ti4+ nanotubes via hydrothermal method, J. Alloy. Compd. 2014, 583: 530-534.

    12. Dan Liu, Ping Huang, Cai’e Cui, et al. Effects of simultaneous change of Mg2+ and Ti4+ contents on the luminescence properties of Y2O2S:Eu3+, Mg2+, Ti4+ nanotubes, Ceram. Int. 2014, 40(1): 117-122.

    13. Ping Huang, Dan Liu, Cai-E Cui, et al. Synthesis and luminescence properties of red long-lasting phosphor Y2O2S:Eu3+, Zn2+, Ti4+ nanotubes via hydrothermal method, Appl. Phys. A 2014, 116(2): 759-765.

    Cai’e Cui, Guowei Jiang, Ping Huang, Lei Wang, Dan Liu, Effect of Eu3+ concentration on the luminescence properties of Y2O2S:Eu3+, Mg2+, Ti4+ nanotubes, Ceram. Int. 2014, 40(3): 4725-4730.

    Cai’e Cui, Guowei Jiang, Ping Huang, Lei Wang, Dan Liu, Synthesis and characterization of Y2O2S:Eu3+, Mg2+, Ti4+ nanotubes via hydrothermal method, J. Lumin. 2014, 145: 665-668.


    科研项目:

    2021/01-2023/12,主持国家自然科学基金青年项目“面向地下管网监测的无Te高性能柔性Ag2Se/MgAgSb温差电池研究”,No. 6200012193,经费:30万元

    2020/04-2022/03,主持山西省高等学校科技创新项目“多维纳米化电-热输运调控辐射式叠层Ag2Se/Cu2Se柔性热电器件研究”,经费:2万元

    2020/01-2021/12,主持中北大学校基金“基于铬酸锶镧薄膜热电偶的高温传感机理及服役特性研究”,经费3万元

    2020/01-2022/12,参与国家重点研发计划“高功率密度微纳振动能量收集器技术及矿井装备智能化应用研究”,No. SQ2019YFB200107,经费:1300万元

    2015/09-2019/07,参与完成国家重点基础研发计划(973)“航空发动机安全运行基础研究”子课题“高可靠超高温在线传感与创成”, No. 2015CB057402,经费:837万元

    参与完成两项国防重点实验室基金


  • 臧俊斌

    职称职务:讲师

    电子邮箱:zangjunbin@nuc.euc.cn

    办公地址:

    办公电话:15234056909

    教育工作经历:

    2019.09--2022.12,中北大学,仪器科学与技术,博士

    2010.09--2013.07,中北大学 精密仪器及机械,硕士

    2006.09--2010.07,中北大学,计算机科学与技术,本科


    研究方向:

    MEMS医疗传感器、智能仪器系统集成及应用


    技术成果(近10年代表性成果):

    1. Junbin Zang, Chenzheng Zhou, Menghui Xiang, Juliang Wang, Haoxin Wang, Zhidong Zhang, and Chenyang Xue*.Optimum Design and Test of a Novel Bionic Electronic Stethoscope Based on the Cruciform Microcantilever with Leaf MEMS Structure[J]. ADV MATER TECHNOL-US, 2022,2101501:1-16.IF=8.8JCR Q1

    2. Zang Junbin, Fan Zheng, Li Penglu, Duan Xiaoya, Wu Chunsheng, Cui Danfeng*, Xue Chenyang*. Design and Fabrication of High-Frequency Piezoelectric Micromachined Ultrasonic Transducer Based on an AlN Thin Film[J]. Micromachines, 2022, 13(8): 1317.IF=3.5JCR Q2

    3. Junbin Zang, Juliang Wang, Zhidong Zhang*, Yongqiu Zheng, Chenyang Xue. Improving ECG Classification Performance by Using an Optimized One-Dimensional Residual Network Model[J]. Appl. Sci, 2022, 12(24), 12957.IF=2.8JCR Q3

    4. Menghui Xiang, Junbin Zang*, Juliang Wang, Haoxin Wang, Chenzheng Zhou, RuiyuBi, Zhidong Zhang, Chenyang Xue*. Research of heart sound classification using two-dimensional features[J]. BIOMED SIGNAL PROCES. 2023, 79(2):104190. (IF=5.07JCR Q2)

    5. Chenzheng Zhou, Junbin Zang*, Chenyang Xue, Yuexuan Ma,Xiaoqiang Hua, Rui Gao, Zengxing Zhang, Bo Li,and Zhidong Zhang. Design of a Novel Medical Acoustic Sensor Based on MEMS Bionic Fish Ear Structure[J].Micromachines,2022, 13(2):163.(IF=3.5JCR Q2)

    6. Zang Junbin, Zhao Guoying, Wei Liping, Xue Chenyang. Test of Nano-Waveguide Resonator with Different Deposition Layers[J]. Acta Photonica Sinica, 2016, 45(8): 0823003-1-0823003-5.


    科研项目:

    1. 国家自然科学基金,62001430,面向互联网诊断的民用低成本MEMS加速度型心音和呼吸音传感器件研究,30万元,在研,主持;

    2. 山西省重点研发计划,202102020101010,面向多模态心音心电信号的心脏健康智能诊断系统研究,300万,在研,课题负责人;

    3. 横向课题,2011900008HXMEMS微芯片心音信号传感器件设计及制备,110万,结题,主持;

    4. 横向课题,大数据关联分析挖掘系统开发,40万,结题,主持;

    5. 横向课题,201060019HX,基于MEMS 技术的心电、心音原位同步智能监测仪器研发,650万,结题,参与;

    6. 科技部国家重点研发计划,2020YFB20008804,硅基MEMS压电高灵敏度超声换能器研发,1500万,在研,参与.


  • 崔娟

    职称职务:副教授

    电子邮箱:cuijuan@nuc.edu.cn

    办公地址:

    办公电话:18800102259

    教育工作经历:

    2009.09-2013.07中北大学,机电工程学院,探测制导与控制技术,本科

    2013.09-2016.07中北大学,仪器与电子学院,测试计量技术及仪器,硕士

    2016.09-2020.07北京理工大学,机电学院,机械工程,博士


    研究方向:

    复杂环境振动微能源采集与应用、微纳机器人操作


    技术成果(近10年代表性成果):

    [1] Tingshan Liu, Juan Cui, Yongqiu Zheng, Shanming Bai, Congcong Hao, Chenyang Xue. A self-powered inert-gas sensor based on gas ionization driven by a triboelectric nanogenerator[J]. Nano Energy, 2023, 106:108083. (SCI一区,IF19.069)

    [2] Shanming Bai, Juan Cui, Yongqiu Zheng, Gang Li, Tingshan Liu, Yabing Liu,Congcong Hao, Chenyang Xue. Electromagnetic-Triboelectric Energy Harvester Based on Vibration-to-Rotation Conversion for Human Motion Energy Exploitation[J]. Applied Energy, 2023, 329:120292. (SCI一区,IF11.446)

    [3] Ru Wang, Juan Cui, Yabing Liu, Dan Liu, Chunhui Du, Shubin Yan, Yongqiu Zheng, Chenyang Xue. Multi-pulse triboelectric nanogenerator based on micro-gap corona[J]. Energy, 2021, 244:122588. (SCI一区,IF8.857)

    [4] Gang Li, Juan Cui, Tingshan Liu, Yongqiu Zheng, Congcong Hao, Xiaojian Hao and Chenyang Xue. Triboelectric-Electromagnetic Hybrid Wind-Energy Harvester with a Low Startup Wind Speed in Urban Self-Powered Sensing[J]. micromachines, 2023, 14,298. (SCI三区,IF3.523)

    [5] Yu Li, Juan Cui, Gang Li, Lu Liu, Yongqiu Zheng, Junbin Zang and Chenyang Xue. An Optimal Design Method for Improving the Efficiency of Ultrasonic Wireless Power Transmission during Communication[J]. sensors, 2022, 22,727. (SCI三区,IF3.847)

    [6] Xiaobin Xue, Zengxing Zhang, Bin Wu, Shanshan He, Qiang Wang, Wenjun Zhang, Ruiyu Bi, Juan Cui, Yongqiu Zheng, Chenyang Xue. Coil-levitated hybrid generator for mechanical energy harvesting and wireless temperature and vibration monitoring [J]. Science China Technological Sciences, 2020. (SCI二区,IF3.572)

    [7] Juan Cui, Huaping Wang*, Zhiqiang Zheng, Qing Shi, Tao Sun, Qiang Huang and Toshio Fukuda. Fabrication of perfusable 3D hepatic lobule-like constructs through assembly of multiple cell type laden hydrogel microstructures. Biofabrication, 2019, 11. (SCI一区topIF: 8.213)

    [8] Juan Cui, Huaping Wang*, Qing Shi, Tao Sun, Qiang Huang and Toshio Fukuda. Vascularized 3D tissue-like constructs engineered by on-chip hydrodynamic-driven assembly of multicellular hierarchical micromodules. Acta Biomaterialia. (SCI一区topIF: 7.242)

    [9] Juan Cui, Huaping Wang*, Qing Shi, Tao Sun, Qiang Huang and Toshio Fukuda. Multicellular co-culture in three-dimensional gelatin methacryloyl hydrogels for liver tissue engineering. Molecules, 2019, 24. (SCI三区,IF: 3.267)

    [10] Juan Cui, Huaping Wang*, Qing Shi, Jianing Li, Zhiqiang Zheng, Tao Sun, Qiang Huang and Toshio Fukuda. Assembly of cellular microstructures into lobule-like 3D microtissues based on microrobotic manipulation. 2018 International Conference on Manipulation, Automation and Robotics at Small Scales (MARSS), 2018. 07, 日本名古屋。(EI检索国际会议,最佳论文奖)

    [11] Juan Cui, Huaping Wang*, Qing Shi, Jianing Li, Zhiqiang Zheng, Tao Sun, Qiang Huang and Toshio Fukuda. Microrobotic assembly of shape-controllable microstructures to perfusable 3D cell-laden microtissues. 7th Annual IEEE International Conference on Cyber Technology in Automation, Control and Intelligent Systems (IEEE-CYBER), 2017. 07, 美国夏威夷。(EI检索国际会议,最佳论文奖)

    [12] 白善明,崔娟,张志东,张天生,郑永秋,薛晨阳.基于六自由度机械臂的艾灸机器人手法控制算法[J].科学技术与工程,2023. (中文核心)

    [13] 崔娟,赵阳,李刚,张浩凌,郑永秋.面向航天地面测试环境监测的多源阵列传感器网络[J].兵器装备工程学报,2022. (中文核心)

    [14] 李刚,程博,崔娟,张成飞,郑永秋,郝晓剑,薛晨阳. 面向航天器地面测试的双参量同步采集与无线传输系统设计[J]. 测试技术学报,2022.

    [15] 张浩凌,崔娟,郑永秋,刘亚兵,杨路余,李刚,薛晨阳. 基于低功耗策略的自供电无线状态检测系统研究[J]. 传感技术学报,2022. (中文核心)

    [16] 薛晨阳,张浩凌,崔娟,刘丹,崔丹凤,郑永秋.基于复合振动能量采集器的自供电无线传感微系统研究[J]. 机械工程学报,2021. (中文EI


    科研项目:

    [1] 国家高技术研究发展计划(“863”计划):面向重型采煤机械在线状态监测微纳系统的三维异质集成技术,2015-2018,1046万元。(参研)

    [2] 国家重点研发计划:高功率密度微纳振动能量收集器技术及矿井装备智能化应用研究,2020-20221229万元。(参研)

    [3] 装备重大基础研究项目:xxx结构振动抑制及能源采集研究,2021-202396万元。(第二负责人)

    [4] 装备重大基础研究项目课题:xxx动态燃速测试,2021-2023149万元。(主持)

    [5] 国家自然科学基金:面向生物混合致动的骨骼肌组织仿生构建及功能诱导研究,2023-202530万元。(主持)

    [6] 山西省基础研究计划资助项目青年项目:基于微机器人跨尺度三维操作的仿生人工组织构建研究,2021-20245万元。(主持)

    [7]  xxx高温谱线测试技术服务合同,2022-202360万元。(主持)


  • 白建东

    职称职务:副教授

    电子邮箱:jdbai@nuc.edu.cn

    办公地址:

    办公电话:18234129971

    教育工作经历:

    2014年09月—2020年07月,山西大学光电研究所,量子光学与光量子器件国家重点实验室,光学,博士

    2010年09月—2014年07月,山西大学,物理电子工程学院,物理学(国家基地),学士



    研究方向:

    量子光学、激光光谱、光学传感



    技术成果(近10年代表性成果):

    (1). Jiandong BAI, Shuo LIU, Jieying WANG, Jun HE, Junmin WANG*, “Single- photon Rydberg excitation and trap-loss spectroscopy of cold Cesium atoms in a magneto-optical trap by using of a 319-nm ultraviolet laser system”, IEEE Journal of Selected Topics in Quantum Electronics, Vol.26, No.3 (2020) 1600106;

    (2). Jiandong BAI, Shuo LIU, Jun HE, Junmin WANG*, “Towards implementation of a magic optical dipole trap for confining ground-state and Rydberg-state Cesium cold atoms”, Journal of Physics B: Atomic, Molecular and Optical Physics, Vol.53, No.15 (2020) 155302;

    (3). Jiandong BAI, Jieying WANG, Shuo LIU, Jun HE, Junmin WANG*, “Autler- Townes doublet in single-photon Rydberg spectra of Cesium atomic vapor with a 319-nm UV laser”, Applied Physics B, Vol.125, No.1 (2019) 33;

    (4). Jiandong BAI, Jieying WANG, Jun HE, Junmin WANG*, “Electronic side-band locking of a broadly tunable 318.6nm ultraviolet laser to an ultra-stable optical cavity”, Journal of Optics, Vol.19, No.4 (2017) 045501;

    (5). Jieying WANG, Jiandong BAI, Jun HE, and Junmin WANG*, “Single-photon cesium Rydberg excitation spectroscopy using 318.6-nm UV laser and room-temperature vapor cell,” Optics Express, Vol. 25, No. 19, 22510-22518 (2017).

    (6). Xin WEN, Yashuai HAN, Jiandong BAI, Jun HE, Yanhua WANG, Baodong YANG, and Junmin WANG*, “Cavity-enhanced frequency doubling from 795nm to 397.5nm ultra-violet coherent radiation with PPKTP crystals in the low pump power regime,” Optics Express, Vol. 22, No. 26, 32293-32300 (2014).


    科研项目:

    1. 参与国家自然科学基金面上项目:可调谐至铷原子795纳米跃迁线的压缩态光场制备与优化及其在铷原子磁强计中的应用(No.11974226), 2020.01-2023.12,资助额: 62.00万元.

    2. 参与国家自然科学基金面上项目:基于铯元素灯的原子激发态光谱及量子相干应用研究(No. 61975102),2020.01-2023.12,资助额:54.00万元.

    3. 参与国家自然科学基金面上项目:基于微米气室里德堡原子实现单光子的存储和纯化(No. 61875111),2019.01-2022.12,资助额:63.00万元.

    4. 参与国家自然科学基金面上项目:铯原子D2线852纳米波长窄带单光子源优化升级及其量子频率转换研究(No. 11774210),2018.01-2021.12,资助额: 63.00万元.

    5. 参与国家重点研发计划课题:基于少原子-光子相互作用系统的精密测量(No. 2017YFA0304502), 2017.07-2022.06, 资助额:652.00万元.

    6. 参与国家自然科学基金资助国家重大科研仪器设备研制专项子任务:基于原子自旋效应的超高灵敏磁场和惯性测量装置-超高灵敏惯性测量中的偏振压缩光检测系统(No. 61227902-2-7), 2013.01-2018.12, 资助额:400.00万元.

    7. 参与国家自然科学基金面上项目:用于铯原子单光子跃迁里德堡激发的单频紫外激光实验实现的关键技术(No. 61475091), 2015.01-2018.12, 资助额:85.00万元.


  • 齐向东

    职称职务:教授

    电子邮箱:qilaoshi@zbdx80.wecom.work

    办公地址:

    办公电话:13703511103

    教育工作经历:

    研究方向:

    无人潜航器

    技术成果(近10年代表性成果):

    科研项目:

    (1) 1999年、2009年国庆50、60周年担任山西彩车技术总工、车长,负责彩车技术设计制作,获山西省五一劳动个人2等功一次。

    (2) 2000年~2008年“微控闸调器试验台”、“制动缸试验台”及“智能单车试验器”获山西省科技进步2等奖3次。

    (3) 2008年承制了北京残奥会闭幕式主会场“智能草坪”工程,是北京2008奥运会、残奥会开闭幕式四个仪式最完美的收官。

    (4) 2010年获“山西省劳动模范”称号,同年入选“山西省333人才”。

    (5) 2010年承担太原市委宣传部主创、著名导演张继刚执导的《千手观音》的舞美特效研制,担任技术总工,成功研制神奇舞台。

    (6) 2011年担任中国山西中部博览会开幕式技术总工。

    (7) 2014年研制的“铁路隧道煤料清除装置”,攻克几十年国家级铁路隧道煤料清除难题。

    (8) 2018年“AUV-RS水下无人潜航器项目”在山西省科技工作者双创大赛中获金奖,该项目为山西省首批军民融合项目,太原市转型发展重点项目。

    (9) 2018年12月入选山西省“三晋英才”山西省拔尖骨干人才。申请国家发明及实用新型专利50余项。

    (10) 2019年3月至2019年11月担任首都国庆70周年大庆群众游行山西彩车技术总监,负责彩车技术、电气设计制作,山西彩车获得群众游行地方彩车“华美奖”。


  • 李波

    职称职务:讲师

    电子邮箱:438695@qq.com

    办公地址:

    办公电话:13835174239

    教育工作经历:

    2002.09 ~ 2005.07    中北大学    计算机应用专业(硕士)

    1995.09 ~ 1999.07    华北工学院  金属材料及热处理专业(本科)


    研究方向:

    软件开发与测试



    技术成果(近10年代表性成果):

    科研项目:

    1.中医特色健康管理APP开发与制作

    2.山西省纪委监委电子书在线阅读管理系统

    3.全省网信干部专业能力测评(含题库)系统开发与建设

    4.电子政务信息审核系统开发项目

    5.国家统一法律职业资格考试太原考区考场导航微信小程序

    6.光纤传送网指挥决策系统软件设计开发

    7.外科手术过程三维成像和显示技术与系统研究

    8.集中供热智能二次网水力平衡公建节能调节软件

    9.验光仪RS-232串口通讯软件开发

    10.液晶视力表


  • 曹溪源

    职称职务:讲师

    电子邮箱:caoxiyuan@nuc.edu.cn

    办公地址:

    办公电话:18019013509

    教育工作经历:

    2021.10-至今   校内副教授 中北大学 仪器与电子学院

    2018.06-2021.10   博士后 中国科学院上海微系统与信息技术研究所

    2012.09-2018.06   博士 华东师范大学 物理与材料科学学院 光学专业

    2016.01-2017.01   国家公派联合培养博士The Royal Melbourne Institute of Technology

    2008.09-2012.06   本科 大连理工大学 物理与光电工程学院-应用物理专业


    研究方向:

    微纳集成光学、电子科学与技术、深度学习


    技术成果(近10年代表性成果):

    [1] " Electric Symmetric Dipole Modes Enabling Retroreflection from an Array Consisting of Homogeneous Isotropic Linear Dielectric Rods ". Xiyuan Cao, Qianjing Wang, Pengcheng Wan, Weiping Zhang, Zhifang Lin, Siu Tat Chui, and Junjie Du*, Advanced Optical Materials,2020,8,2000452 (1区  SCI-IF:9.926)

    [2] " Perfect near-infrared absorption of graphene with hybrid dielectric nanostructures ". Xiyuan Cao*,Yijin Zhang, Ziyang Han, Wenfei Li, Guanyu Liu,Zhongying Xue,Yi Jin and Aimin Wu, Journal of Materials Science: Materials in Electronics,2020,31,5820-5826 (SCI-IF:2.195)

    [3] " Enhancing the absorption of a thin germanium slab with periodical patterning ". Xiyuan Cao*, Yijin Zhang, Ziyang Han, Wenfei Li, Yi Jin and Aimin Wu, Journal of Materials Science: Materials in Electronics,2020,31,5872–5878 (SCI-IF:2.195)

    [4] " Near Infrared Absorption Enhancement of Graphene for High-Responsivity Photodetection ". Xiyuan Cao,Yijin Zhang, Yi Jin and Aimin Wu*, IEEE 16th International Conference on Group IV Photonics (GFP) 2019 (EI论文)。

    [5] " Magnetically Tunable Invisibility of a Homogeneous Dielectric Rod with No Cover or Active Source". Yanyan Zhang, Xiyuan Cao, Yang Tang, Zhiyuan Che, Fouodji T. Yannick, and Junjie Du*, Physical Review Applied 2016, 6, 061001 (2区 SCI-IF:4.194)

    [6] "Flat-Lens Focusing of Electron Beams in Graphene". Yang Tang, Xiyuan Cao, Ran Guo, Yanyan Zhang, Zhiyuan Che, Fouodji T. Yannick, Weiping Zhang and Junjie Du*, Scientific Reports 2016, 6:33522 (SCI-IF:4.044)

    [7] " Properties of grating modes and their effect on reflection behavior of a periodic array of parallel rods by modal method". Jin Wang, Hao Li, Xiyuan Cao, Junjie Du, and Weiping Zhang*, Journal of Applied Physics 2015, 118, 103109 (SCI-IF:2.79)

    [8] 国际会议邀请报告:Advanced Electromagnetics Symposium 2019, Lisbon - Portugal, July 24–26


    科研项目:

    1. 主持 超薄光子晶体锗板的近红外完美吸收研究  西安光机所开放基金 (6万元) 2019.11-2021.11

    2. 主持 基于共振完美吸收的高效探测机理研究  山东大学开放基金 (10万元) 2019.08-2021.08

    3. 参与 粒子电磁波散射行为的控制方式探讨及潜在应用研究 国家自然科学基金面上项目 2015.01-2018.12


  • 王永华

    职称职务:讲师

    电子邮箱:huazaisss@foxmail.com

    办公地址:

    办公电话:17330584286

    教育工作经历:

    2013/09-2016/12:中北大学,测试计量技术及仪器,博士

    2011/09-2014/06:中北大学,物理电子学,硕士                             

    2007/09-2011/06:中北大学,微电子学,学士

    2019/07-2021/09,深圳大学,物理与光电工程学院,光学工程,博士后


    研究方向:

    MEMS温盐深传感器、硅基光电子器件、微纳制造技术

    技术成果(近10年代表性成果):

    1、 Yonghua Wang, Chenyang Xue, Zengxing Zhang, Hua Zheng, Wendong Zhang, Shubin Yan. Tunable optical analog to electromagnetically induced transparency in graphene-ring resonators system. Scientific Reports, 2016, 6, 38891. (SCI,IF:3.998)

    2、 Yonghua Wang; Su He; Xiaoyan Gao; Piaopioa Ye; Lei Lei; Wenchan Dong; Xinliang Zhang; Ping Xu ; Enhanced optical nonlinearity in a silicon-organic hybrid slot waveguide for all-optical signal processing, PHOTONICS RESEARCH, 2022, 10(1): 50-58. (SCI,IF:7.1)

    3、 Yonghua Wang, Haofan Yang, Wenchan Dong, Lei Lei*, Jing Xu, Xinliang Zhang and Ping Xu, “Highly Nonlinear Organic-Silicon Slot Waveguide for Ultrafast Multimode All-Optical Logic Operations,” IEEE Photonics Journal 2020,12(6), 3200712. SCI,IF:2.833)

    4、 Yonghua Wang, Hua Zheng, Chenyang Xue and Wendong Zhang. Optical Analog to Electromagnetically Induced Transparency in Cascaded Ring-Resonator Systems. Sensors, 2016, 16(8), 1165.(SCI, IF:3.275)

    5、 Yonghua Wang, Junbin Zang, Wenchan Dong, et al, "High Efficiency Electro-Optic Modulation in a Graphene Silicon Hybrid Tapered Microring Resonator," IEEE Access, 2021, 9, 87869-87876(SCI,IF:3.367)

    6、 Zhang Zengxing, Wang Yonghua, Hansen P A S, et al. Black silicon with order-disordered structures for enhanced light trapping and photothermic conversion. Nano Energy, 2019, 65: 103992. (SCI, IF: 16.602)

    7、Yonghua Wang, Liping Wei, Junbin Zang and Chenyang Xue. Electromagnetically Induced Transparency-like Effect in the Optimized Silicon Micro Ring Resonators. Acta Photonica Sinica, 2014, 42(2):1473-1477.(EI)  


    科研项目:

    主持的项目:

    1、2020年中国博士后科学基金面上项目:面向光信息芯片的硅基石墨烯电光调制器的基础研究,项目号:2020M672783,8万元,2020年7月-2021年6月。

    2、2019年河北省自然科学基金青年基金:面向光信息芯片的硅基纳米光波导关键器件的基础研究,项目号:F2019209599, 6万元,2019年1月-2021年12月。

    参与的项目:

    1、 微纳米传感器原理与集成(国家自然科学基金杰出青年基金项目: 61525107)

    2、 基于纳米光栅的光纤-芯片高效垂直耦合器件研究 (国家自然科学基金项目:61076111)

    3、纳米光波导器件制造科学问题及关键技术研究(国家自然科学基金项目:91123036)

    4、基于高Q值环形微谐振腔倏逝场的MEMS生化传感芯片基础研究(国家自然科学基金项目:61178058)

    5、可编程光子逻辑运算芯片研究(国家重点研发计划子课题:2019YFB2203102)



  • 郝聪聪

    职称职务:讲师

    电子邮箱:20210093@nuc.edu.cn

    办公地址:

    办公电话:18734914962

    教育工作经历:

    2010.09-2014.06,中北大学,信息与通信工程学院,信息对抗技术专业,学士学位

    2015.09-至今,中北大学,仪器与电子学院,仪器科学与技术专业,博士学位

    2021.09-至今,中北大学,信息与通信工程学院,信息对抗技术专业,讲师


    研究方向:

    MEMS传感器; 摩擦纳米发电机;无线自供电传感系统

    技术成果(近10年代表性成果):

    1. Congcong Hao, Jian He, Cong Zhai, Wei Jia, Linlin Song, Jundong Cho, Xiujian Chou*, Chenyang Xue*. Two-dimensional triboelectric-electromagnetic hybrid nanogenerator for wave energy harvesting[J]. Nano Energy,2019,58:147-157.(SCI,一区TOP,IF:16.602)

    2. Congcong Hao, Jian He, Zengxing Zhang, Yong Yuan, Xiujian Chou, Chenyang Xue*. A pendulum hybrid generator for water wave energy harvesting and hydrophone-based wireless sensing[J]. AIP Advances, 2020, 10(12),125019.

    3. Congcong Hao, Wenjun Zhang, Bin Wu, Zhidong Zhang, Jian He, Renxin Wang, Chenyang Xue*. A novel two-dimensional high SNR MEMS shear stress sensor for ocean turbulence. Sensors and Actuators A:Physical, 2021,330: 112891.

    4. Wenjun Zhang, Congcong Hao, Zengxing Zhang, Shasha Yang, Xu Chen, Jiali Peng, Junbin Zang, Hua Yang, Dalei Song, Renxin Wang*, Chenyang Xue*, Vector high-resolution turbulence sensor based on a MEMS bionic cilium-shaped hydrophone, IEEE sensors journal,2021, 21(7), 8741-8750.

    5. 郝聪聪,何常德,梁伟健,何煜蓉.水下应用的电容式微机械超声换能器阵列设计[J].应用声学,2017,36(05):382-388.

    6. 梁伟健,张文栋,何常德,郝聪聪. 应用于微电容超声换能器的信号处理电路设计[J].应用声学,2018,37(02),287-291.



    科研项目:

    2021.09-至今,国家重点研发计划《高功率密度微纳振动能量收集器技术及矿井装备智能化应用研究》,项目编号2019YFB2004800, 经费:1229万元,在研,参与。

    2017.09-至今:国家自然基金委重大科研仪器项目《基于MEMS技术的全海深湍流混合矩阵剖面观测仪器研究》,项目编号61727806,经费:867.57万元,在研,参与。

    2017.09-2018.9:国家高技术研究发展计划(863计划)《面向重型采煤机械在线状态监测的微纳系统三维异质集成技术》,经费:3757万元,已结题,参与。



  • 陈奕

    职称职务:讲师

    电子邮箱:chenyi@nuc.edu.cn

    办公地址:

    办公电话:18203412562

    教育工作经历:

    2012.09-2016.06,中北大学,信息与通信工程学院,电子信息工程,学士学位

    2016.09-2019.06,中北大学,仪器与电子学院,仪器科学与技术专业,硕士学位

    2019.09-2022.06,中国科学院大学,兰州化学物理研究所,材料学,博士学位

    2022.07-至今,中北大学,仪器与电子学院,仪器科学与技术专业,讲师


    研究方向:

    MEMS传感器;超级电容器

    技术成果(近10年代表性成果):

    论文 

            1. Yi Chen and Zhiguang Guo*. An ionic liquid-infused slippery surface for temperature stability, shear resistance and corrosion resistance, Journal of Materials Chemistry A, 2020, 45, 24075-24085.  (SCI一区, IF=12.732)

            2. Yi Chen, Weimin Liu, Jinxia Huang and Zhiguang Guo. Lubricant self-replenishing slippery surface with prolonged service life for fog harvesting, Friction, 2021, 10, 1676-1692.

            3. Yi Chen, Xiaojuan Li, Chenggong Xu, Daoai Wang, Zhiguang Guo*, Jinxia Huang* and Weimin Liu*, Electron transfer dominated triboelectrification at the hydrophobic/slippery substrate–water interfaces, Friction, 2022, DOI: 10.1007/s40544-022-0646-1.

            4. Yi Chen, Yanfang Li, Zhenyin Hai, Yuankai Li, Shaohua Kan, Jiamin Chen, Xi Chen, Serge Zhuiykov, Danfeng Cui, Chenyang Xue. Facile-synthesized NiCo2O4@MnMoO4 with novel and functional structure for superior performance supercapacitors, Applied Surface Science, 2018, 452, 413-422.

            5. Chenyang Xue, Yi Chen, Yuankai Li, Hongmei Chen, Danfeng Cui, Liwei Lin. NiCo2O4@TiO2 electrode based on micro-region heterojunctions for high performance supercapacitors, Applied Surface Science, 2019, 493, 994-1003.

            6. Yuankai Li, Zengxing Zhang, Yi Chen, Hongmei Chen, Yanyun Fan, Yanfang Li, Danfeng Cui, Chenyang Xue*. Facile synthesis of a Ni-based NiCo2O4-PANI composite for ultrahigh specific capacitance, Applied Surface Science, 2020, 506, 144646.

    专利

      1.郭志光,陈奕,黄金霞,一种基于半聚合的离子液体灌注的超滑表面的制备方法[P].申请号:202010940862.8,已授权.

      2.郭志光,陈奕,黄金霞,一种基于超滑移表面的摩擦纳米发电机的制备方法[P].申请号:202111221381.2,已受理.


    科研项目:

     (1)国家自然科学基金委员会,地区科学基金项目,52165040,纳米流体在梯度润湿表面的自迁移机理及其摩擦学行为研究, 2022-01-01至2025-12-31, 35万元,在研,参与。

     (2)国家自然科学基金委员会,面上项目,61771434,基于高Q值Fabry-perot共振敏感机制的全固态超宽频带高灵敏声传感器件的基础研究,2018-01-01至2021-12-31,62万元,结题,参与。


  • 李楠

    职称职务:校内副教授

    电子邮箱:

    办公地址:

    办公电话:15376792206

    教育工作经历:

    2019.10-2021.09 京都大学(日本) 工学研究科 联合培养博士研究

    2017.09-2022.01 中国海洋大学 海洋科学 海洋探测技术专业 博士研究生

    2015.90-2017.07 中国海洋大学 光学工程专业 硕士研究生(硕博连读)

    2011.09-2015.07 中国海洋大学 光信息科学与技术专业 本科


    研究方向:

    研究方向:激光光谱传感技术、激光诱导击穿光谱技术

    技术成果(近10年代表性成果):

            1 Nan Li, Naoya Nishi, Ronger Zheng and Tetsuo Sakka, Efficient detection of emission lines for H and O and the use as an internal standard for underwater LIBS. J. Anal. At. Spectrom. 2021, 36, 345-351.

            2 Nan Li, Naoya Nishi, Ronger Zheng and Tetsuo Sakka, Signal enhancement in the underwater long-pulse laser-induced breakdown spectroscopy for the analysis of bulk water. J. Anal. At. Spectrom. 2021, 36, 1170-1179. (封面文章)

            3 Nan Li, Kota Tanabe, Naoya Nishi, Ronger Zheng and Tetsuo Sakka, Simultaneous detection of a submerged Cu target and bulk water by long-pulse laser-induced breakdown spectroscopy. J. Anal. At. Spectrom. 2021, 36, 1960–1968.

            4 Nan Li, Jinjia Guo, Jiaojian Song, Wangquan Ye, Yuan Lu, Ye Tian and Ronger Zheng, Comprehensive effects of oceanic pressure and temperature on in-situ LIBS signals. J. Anal. At. Spectrom. 2021, DOI: 10.1039/D1JA00266J.

            5 Nan Li, Jinjia Guo, Chao Zhang, Yongquan Zhang, Qingyang Li, Ye Tian and Ronger Zheng, Salinity effects on elemental analysis in bulk water by laser-induced breakdown spectroscopy. Appl. Opt. 2019, 58, 3886-3891.

            6 Nan Li, Jinjia Guo, Lin Zhu, Yuan Lu, Ye Tian and Ronger Zheng, Effects of ambient temperature on laser-induced plasma in bulk water. Appl. Spectrosc. 2019, 73, 1277-1283. 

    科研项目:

      (1)主持山西省自然科学基金项目1项,横向项目2项,参与研制面向动态燃烧场诊断的原位激光诱导击穿光谱探测系统,参与研制国内首台深海金属离子激光诱导击穿光谱原位探测系统(LIBS-sea),实现水深2000米的原位探测,为目前国际上该技术领域最深原位探测深度;

      (2)发展了面向水体探测的长脉冲激光诱导击穿光谱(LIBS)增强技术,大幅度提高了水下LIBS探测灵敏度,能够为更好地实现水下LIBS技术的原位应用提供技术基础。


  • 陈佳敏

    职称职务:

    电子邮箱:18335160365@163.com

    办公地址:

    办公电话:19834400928

    教育工作经历:

    2012.09 ~ 2016.06  中北大学  仪器与电子学院微电子学(学士学位)

    2016.09 ~ 至今   中北大学  仪器与电子学院仪器科学与技术(博士学位)

    导师:薛晨阳教授(国家杰出青年科学基金获得者,长江学者特聘教授,国家百千万人才工程有突出贡献中青年专家,山西省“三晋学者”特聘教授,教育部重点实验室主任,科技部创新人才推进计划重点领域创新团队负责人)

    研究方向:

    基于Fabry-Pérot标准具谐振效应的光纤声传感器研究,包括光纤声传感器的设计、加工和测试。

    基于SiO2光波导谐振腔的光电振荡器研究。


    技术成果(近10年代表性成果):

    论文

    1. Jiamin Chen, Yongqiu Zheng, Chenyang Xue, Chengfei Zhang, and Yi Chen, "Filtering effect of SiO2 optical waveguide ring resonator applied to optoelectronic oscillator," Opt. Express 26, 12638-12647 (2018) (SCI 二区TOP IF: 3.894)

    2. Jiamin Chen, Chenyang Xue, Yongqiu Zheng, Liyun Wu, Chen Chen, and Yuan Han, "Micro-fiberoptic acoustic sensor based on high-Q resonance effect using Fabry-Pérot etalon," Opt. Express 29, 16447-16454 (2021) (SCI 二区TOP IF: 3.894)

    3. Chen, Jiamin, Xue, Chenyang, Zheng, Yongqiu, Bai, Jiandong, Zhao, Xinyu, Chen, Chen, Wu, Liyun and Han, Yuan, "Fiber-Optic Acoustic Sensor for Flexibility and Universality Applications Adopting Phase Modulation Spectroscopy," IEEE Sensors Journal, vol. 21, no. 19, pp. 21631-21637, 1 Oct.1, 2021.(SCI 二区IF: 3.301)

    4. Chen, Jiamin, Chenyang Xue, Yongqiu Zheng, Jiandong Bai, Xinyu Zhao, Liyun Wu, and Yuan Han. 2022. "Acoustic Performance Study of Fiber-Optic Acoustic Sensors Based on Fabry–Pérot Etalons with Different Q Factors" Micromachines 13, no. 1: 118 (SCI 三区IF: 2.891)

    5. Zerong Jia, Jiamin Chen, Yongqiu Zheng, Chen Chen, Liyun Wu, Jiandong Bai, Chenyang Xue,“High-finesse frequency tunability of optoelectronic oscillator based on SiO2 optical waveguide ring resonator with the frequency locking technology”,Optics Communications, Vo. 498, 2021. (SCI 三区IF: 2.31) (共同一作)

    6. Chen Chen, Yongqiu Zheng, Jiamin Chen, Liyun Wu, Xinyu Zhao, Chenyang Xue“, Full investigation of frequency locking loop model for high-Q Fabry-Pérot cavity acoustic sensor ” ,Optics & Laser Technology,Vol. 139,2021. (SCI 二区IF: 3.867)

    专利:

    1. 郑永秋,薛晨阳,管今哥,贾平岗,赵馨瑜,陈晨,陈佳敏,武丽云,韩源,耐高温高压结构热--振三参数集成原位传感器及系统,申请号:202110173827.2

    2. 郑永秋,崔娟,贾平岗,薛晨阳,韩源,陈佳敏,花晓强,陈晨,武丽云,基于MEMS 工艺的敞口式石英玻璃微型F-P 腔传感结构,申请号:202110232693.7


    科研项目:

    12020.06 ~2021.06 山西省研究生教育创新项目(主持) 《基于MEMS 工艺的无振膜纯光学宽频带声传感器研究》

    采用MEMS 工艺进行三明治结构的无振膜FP 标准具的加工,利用其与光纤准直器耦合形成宽频带无振膜纯光学光纤声传感器并在实验室和室外环境中分别进行了声测试和应用。

    22019.06 ~2020.12 “十三五装备预研共用技术项目(参与) XXXXXXXX 获取与测量技术》

    设计并制作出耐高声压MEMS 微型F-P 腔噪声传感器,通过室内高声压校准,并进行了以固体火箭发动机等为应用平台的现场验证测试。

    32018.09 ~至今国家自然基金委面上项目(参与) 《基于高Q Fabry-Perot 共振敏感机制的全固态超宽频带高灵敏度声传感器件的基础研究》

    设计并制作出基于高Q Fabry-perot 共振敏感机制的全固态超宽频带高灵敏声传感器件,完成Fabry-perot 共振腔MEMS 一体化全封装技术和进行了宽频带高灵敏Fabry-perot 声敏感单元的环境适应性测试。

    42016.09 ~ 2018.09 国家自然基金委青年基金项目(参与) 《硅基高Q 值微谐振腔光电振荡器的研究》

    提出硅基高Q 值微谐振腔光电振荡器的实现方案,验证了高Q SiO2 光波导谐振腔在光电振荡器中的滤波效应,并利用频率锁定技术实现了光电振荡器的高精度可调谐,为实现高频、低相噪、集成化的光电振荡器奠定基础。


  • 翟聪

    职称职务:校内副教授

    电子邮箱:OliverChild@hotmail.com

    办公地址:

    办公电话:

    教育工作经历:

    2023.06-至今 中北大学 仪器与电子学院 仪器科学与技术 讲师

    2019.09-2023.06 天津大学 精仪学院 仪器科学与技术专业 博士

    2016.09-2019.06 中北大学 仪器与电子学院 仪器科学与技术专业 硕士

    2012.09-2016.06中北大学 仪器与电子学院 测控技术与仪器专业 本科


    研究方向:

    光学传感测量、光学超分辨成像、微纳米传感加工测试



    技术成果(近10年代表性成果):

    [1] Cong Z, Yujian H, Zuzeng L, Yulu C, Han. W, et al. An optical tweezer-based microdroplet imaging technology. Nanotechnology and Precision Engineering, 2023, 6(3): 033004

    [2] Cong Z, Yujian H, Zuzeng L, Yulu C, Mengdi G, et al. Addressing the imaging limitations of microsphere-assisted nanoscope. Optics Express, 2022,30(22),39417-39430.

    [3] Cong Z, Chunguang H, Shuai L, Yanhua Ma, Yajing Zhang, et al. The formation principle of micro-droplets induced by optical tweezers. Nanoscale Advances, 2021,3,279.

    [4] Cong Z, Xiujian C, Zengxing Z, Xi C, et al. An electrostatic discharge based needle-to-needle booster for dramatic performance enhancement of triboelectric nanogenerators. Applied Energy. 2018,231,1346-1353.

     

    专利:

    [1] 翟聪胡春光马彦华郭梦迪胡晓东郭彤可实时反馈轴向光阱位置的光镊超分辨成像方法和系统202110790744.8 (已公开)




    科研项目:

    1)国家自然科学基金委员会,原子薄膜厚度的微变布儒斯特角偏光测量方法研究,面上项目,520753832021-01 2024-1258万元,在研,参与。


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