科研工作:
1. Metrology and Calibritation technology2. Nansostructure and nanotechnologies: Plasmonic optics, Metamaterials and Metadevices, Microsensor and system.3. Measurement technology and instrumentation: Photoelectric measurement theory and technology 2015年期刊论文1.Yongqian Li n, Lei Su, Xiaolun Xu, Chenglin Zhang, Binbin Wang,Energy conversion within infrared plasmonic absorption metamaterials for multi-band resonance,Optics Communications,Volume 342, 1 May 2015, Pages 247–252 (SCI,EI)2. Xiaolun Xu, Yongqian Li, Binbin Wang, Zili Zhou. Prediction of Multiple Resonance Characteristics by an Extended RLC Circuit Model forPlasmonic s in Infrared, Optic Letter (online) 2014年期刊论文:1. Yongqian Li(黎永前), Binbin Wang(王斌斌), Xiaolun Xu(许小轮), and Lei Su(苏磊). Polarization sensitivity contributes to multiple band spectra of one mid-Infrared absorber. Chinese Optical Letter, 2014, Vol.122.黎永前,郭勇君,苏磊,王斌斌,朱振宇,徐征。矩形块微纳结构材料红外波段偏振光吸收特性.光学精密工程,2014,Vol.22LI Yong-qian,GUO Yong-jun,SU Lei,WANG Bin-bin, ZHU Zhen-yu, XU Zheng. Polarization-dependent absorption characteristics of rectangular-block metamaterials in the infrared region. Optics and Precision Engineering, 2014,Vol.22 (in Chinese)3.黎永前,苏磊,王斌斌,郭勇君,寿宸.红外波段十字阵列光吸收结构光学特性研究,光学学报,2014,Vol.34,1:pp(EI)Li Yongqian,Su Lei Wang Binbin Shou Chen. Optical Properties of Cross-shaped Metamaterial at Infrared Wavelengths, ACTA OPTICA SINICA, 2014, Vol.34:pp012300. (In Chinese)2014年会议论文:1. Yongqian Li Binbin Wang Xiaolun Xu Lei Su.A Polarization-sensitive Mid-infrared Plasmonic Absorber for Multi-band Resonance.Proc. SPIE9099, Polarization: Measurement, Analysis, and Remote Sensing XI, 909913 (May 21, 2014)From SPIE Conference Volume 9099:Polarization: Measurement, Analysis, and Remote Sensing XI. David B. Chenault Dennis H. Goldstein, Baltimore, Maryland, USA | May 05, 20142. Yongqian Li, Lei su, Binbin wang, Dual-Band Infrared Absorption in Symmetrical Perfect Absorber Metamaterials. The 5th International Conference on Metamaterials, Photonic Crystals and Plasmonics, Nanyang Technological University, Singapore,May, 25-29.2013年期刊论文:1. 黎永前,苏磊,满力,寿宸,叶芳。微纳流体光波导技术及其在生物传感器中的应用,光学 精密工程,20132. 黎永前,李薇,郭勇君,苏磊 。硅基三维曲面湿法腐蚀复合制备方法,光学 精密工程,20133.Yongqian Li, Lei Su, Chen Shou, Chunmeng Yu, Jinjun Deng, Yu Fang.Surface-enhanced molecular spectroscopy (SEMS) based on perfect-absorber metamaterials in the mid-infrared.Scientific Reports,2013,Vol.3, P2865(SCI000325216100003)4.黎永前,王斌斌,苏磊,朱振宇,周自力.微纳结构红外吸收材料光学常数的解析模型,光学学报,2013,Vol.33,12:pp1216002-08(EI20140317203881)2013年会议论文:1. Yongqian Li, Lei Su, Binbin Wang, Yongjun Guo, Zhenyu Zhu, and Zili Zhou, ”Multiplex-bands spectral characteristics of infrared perfect absorber metamaterials,”Proc. SPIE8806, Metamaterials: Fundamentals and Applications VI, 880612 (September 11, 2013)(EI20135017066607)2.Yongqian Li, Yongjun Guo, Lei Su, Binbin Wang, Zheng Xu, and Zili Zhou,“Plasmonic Absorption Nanoantenna for Frequency Selective Mid-Infrared Detection,”,Proc. SPIE8896, Electro-Optical and Infrared Systems: Technology and Applications X,88960E(October25,2013)(EI20135117093252)2013年以前:1. 王宁博,李薇,王晶龙,黎永前。基于表面等离子波耦合的流体波导光栅耦合器,微纳电子技术,2012年,Vol.49(6)2. 冯伟刚,黎永前,白晓荣,李薇,王晶龙。典型挠性支承力学特性研究。机械制造。2012年5期3. 郭海文,黎永前,丁丽娟,叶芳。一种新型液/液光波导的模拟研究。机械制造,2011年9期4. 丁丽娟,黎永前,郭海文,王宁博,热光效应的微流体光波导结构分析。微纳电子技术。2011年5期5. 米鑫,黎永前,田梦君,基于交流电场驱动的微流体运动特性模拟研究。计算机仿真。 2009年2期6. 叶芳,苑伟政,黎永前,图型化蛋白质的微接触压印技术研究,西工大学报,2009,Vol. 27(3):347-350 (EI20093012214354)7. 张维,黎永前,唐虹,微分干涉在微流体温度场测量中的误差分析,功能材料与器件学报,2008年4月,Vol.14(2):457~4618. Junshan Liu, Hongchao Qiao, Chong Liu, Zheng Xu,Yongqian Li, Liding Wang Plasma assisted thermal bonding for PMMA microfluidic chips with integrated metal microelectrodes。Sensors and Actuators B:Chemical9. 徐征,黎永前等,微管道壁面周期性突起对电泳分离流动特性影响研究,计算力学学报,2007年,Vol.24(1)10. Yongqian Li,Liding Wang,Zheng Xu,Deviations of electroosmotic fluidic profile from electric double layer theory,1st IEEE International Conference on Nano/Micro Engineered and Molecular Systems (IEEE Cat No. 06EX1290C),2006,1:8~10,Zhuhai,China, SCI:000248485800029)11. Li Yongqian,Liding Wang,Zheng Xu,Electric charge measurement on micro-particles suspending in electrokinetic microfluidic devices, IEEE International Conference On Nano/Micro Engineered And Molecular Systems(IEEECat No.06EX1290C), Vol.1-3, ZhuHai, Chian, Jan. 18~22, 2006 (SCI: 000248485800031)12. 黎永前,徐征等,电动微流体显微粒子图像测速误差修正方法,大连理工大学学报.Vol. 46(5), 2006:685~689 (EI 065110316797)13. 段仁庆,黎永前等,显微粒子图像测速计算方法,中国机械工程,2005,16:96~99,(EI 05349312944)14. Li Yongqian, Xu Zheng, et al. Digital Particle Image Velocimetry Systems for Electrokinetic Microfluidic Devices, ISIST 2004, Xi’an, China, Aug.19~23. Vol.3:321~326. (ISIP: 000225098000063)15. 黎永前,朱铭铨,相位偏移干涉测量中移相误差补偿技术研究,航空学报,2002,23(4): 38116.Li Yongqian, Zhu Mingquan, Geometric And Thermal Error Synthesis Model For Nanometer Accuracy Measurement Systems, Proceedings .of the 6th Inter. Conf. on Pro.of Mach.Tech. (ICPMT’6), Xi’An, Shannxi, 14~16, Sept. 2002:230 (ISIP:000180780900042)17. 黎永前,徐征等,电驱动微流体粒子图像测试系统,中国机械工程,2005,16:71~73(EI 05349312935)18. 黎永前,李晓莹,朱铭铨,外差干涉非线性误差修正方法研究,西北工业大学学报, 2004, 22 (5): 622~625(EI 05038797820)19. Li Yong-qian, Zhu Zhenyu, Li Xiaoying. Elimination of Reference Phase Errors in Phase Shiffting Interferometry,Measurement Science & Technology,2005,16:1335–1340 (SCI 000230735900016,EI 05249155655)20. Li Yongqian, Zhu Mingquan, A New Compensation Method of Nonlinearity in Heterodyne Interferometer with Nanometric Accuracy, Procedings. of 2nd Inter. Sym. on Instrum. Sci. and Tech. (ISIST’2002), Jinan, China, Aug.18~22. Vol.3:83~88(EI 03427680093, ISIP:000180676200016)21. LI Yong-qian, Xu Zheng et al. Study on Distribution of Electrokinetic Microfluid in Rectangular Microchannel,2004 International Symposium on Micro/ Nanomechatronics and Human Science, The Fourth Symposium “Micro- and Nano- Mechatronics for Information-Based Society” Oct.31~ Nov.3, 2004, Japan: 243~248 (EI 05289202536, ISIP:000227432400043)
教育背景:
2011年~2012年 美国加州伯克利大学(UC Berkeley)生物医学工程系,访问学者,合作者,Luke P. Lee教授,开展生物视觉仿生技术、微纳光学研究;2003年~2015年 大连理工大学微系统中心 博士后研究,电动微流体运动特性实验研究,合作者,王立鼎院士;1998年~2003年 西北工业大学 机械制造及其自动化专业 博士, 激光干涉测量与校准技术研究,导师,朱铭全教授;1994年~1998年 西北工业大学 测试计量技术及仪器 专业硕士 ,圆度误差测量与仪器自动化技术。