1.个人简历
李顺波,重庆大学光电工程学院,“百人计划”研究员,博士生导师。主要从事微纳器件的设计与加工、微纳流体的物理特性、生化传感器、微反应器的光电检测等。在利用同步辐射光源对材料的表征方面有丰富的研究经验,分别在欧洲同步辐射中心(ESRF)和英国同步辐射中心(Diamond light source)有相关科研经历。是欧洲微纳流体协会会员,中国微纳米技术协会高级会员,Lab on a Chip,Sensors and Actuators B,Biomicrofluidics等国际期刊邀请审稿人。负责包括重庆大学“百人计划”项目启动基金、中央高校基本科研业务经费和参与重庆市重点研发项目。到目前为止,在国内外期刊发票论文共计30余篇,部分高质量论文发表于: Advanced Materials (IF:19)、Angewandte Chemie (IF:12)、Small(IF:8.6)、Lab on a Chip(IF:5.6)和Sensors and Actuators B(IF:4.8)等中科院分区为一区的期刊。合作申请并获权美国发明专利一项和中国发明专利一项。与香港科技大学、日本冲绳科技大学、英国利兹大学、英国格拉斯哥大学、澳门大学、澳大利亚麦考瑞大学等建立了长期的合作关系,有联合培养和互派研究生项目。
2. 教育及工作经历
教育经历
2014/6,香港科技大学,物理,理学博士
2009/6,重庆大学,应用物理,理学学士
工作经历
2018/1--至今 重庆大学,光电工程学院,“百人计划”研究员,博士生导师
2014/10--2017/9 英国利兹大学,博士后, 合作导师:Prof. Fiona Meldrum
2014/7--2014/9 香港科技大学,研究助理, 合作导师:Prof. Weijia Wen
2013/6--2013/7 沙特国王科技大学,访问学生, 合作导师:Jürgen Kosel
2011/11--2012/3 日本冲绳科技大学,访问学生,合作导师:Prof. Yabing Qi
3. 研究方向
(1)新型微纳器件的设计与制备
(2)生化传感器
(3)基于微流控芯片的生物材料研究
4. 主要学术贡献(研究成果)
围绕微流控器件和光电检测做了系统的研究工作,包括微器件的设计与加工、微纳流体中的物理现象的研究以及光电检测和微反应器。
(1)在微器件的设计与加工方面利用新技术实现了多种微流控芯片的设计与加工。
(2)利用微纳流体中双电层显著的物理现象,设计制备了一系列的微纳器件,实现了基于电渗流的液体微量加样、基于介电泳的细胞和DNA的富集和分离等等。
(3)基于微流控电学检测设计出了一种流体和电检测相结合的逻辑门。
(4)在光学检测方面,依据待检测样品光学特性的不同实现了谐振光栅芯片、用于同步辐射的红外光谱芯片以及用于同步辐射的X射线衍射芯片。
(5)设计的微反应器和实时在线检测方法应用于生物材料的研究,发现了受限空间对亚稳态晶体的寿命有明显的延长作用,并可实现高通量的材料生长研究。
5.代表性的文章列表(*通讯作者)
[1] Shunbo Li*, Muling Zeng, Thembaninkosi Gaule, Michael J. McPherson and Fiona C. Meldrum*, “Passive Pico-injection Enables Controlled Crystallization in a Droplet Microfluidic Device”, Small, 2017, 13, 1702154.
[2] Yi-Yeoun Kim; Colin Freeman; Xiuquing Gong; Mark A Levenstein; Yunwei Wang; Alexander Kulak; Clara Anduix Canto; Shunbo Li; Li Chen; Phillip Lee; Hugo K Christenson; Fiona C Meldrum, “The Effect of Additives on the Early Stages of Growth of Calcite Single Crystals”, Angewandte Chemie-International Edition, 2017, 129 :11885
[3] Shunbo Li, Johannes Ihli, William J. Marchant, Muling Zeng, Li Chen, Katia Wehbe, Gianfelice Cinque, Oscar Cespedes, Nik Kapure and Fiona C. Meldrum*, “Synchrotron FTIR Imaging of Mineralization in a Microfluidic Device”, Lab on a Chip, 2017, 17, 1616.
[4] Shunbo Li, Xiuqing Gong, Ciara S. Mc Nally, Muling Zeng, Thembaninkosi Gaul, Clara Anduix-Canto, Alexander N. Kulak, Lukmaan A. Bawazer, Michael J. McPherson and Fiona C. Meldrum, “Rapid preparation of highly reliable PDMS double emulsion microfluidic devices”, RSC Advances, 2016, 6, 25927.
[5] Yu Wang, Wenbin Cao, Shunbo Li and Weijia Wen*, “Facile and high spatial resolution ratio-metric luminescence thermal mapping in microfluidics by near infrared excited upconversion nanoparticles”, Appl. Phys. Lett, 2016. 108, 051902.
[6] Xiuqing Gong, Yun-Wei Wang, Johannes Ihli, Yi-Yeoun Kim, Shunbo Li, Richard Walshaw, Li Chen and Fiona C. Meldrum*, "The Crystal Hotel: A Microfluidic Approach to Biomimetic Crystallization", Adv. Mater., 2015, 27, 7395.
[7] Shunbo Li, Ziran Ye, Yu Sanna Hui, Yibo Gao, Yusheng Jiang, and Weijia Wen*, “On-chip DNA preconcentration in different media conductivities by electrodeless dielectrophoresis”, Biomicrofluidics, 2015,9, 054115.
[8] Kristelle Bougot-Robin, Rimantas Kodzius, Weisheng Yue, Longqing Chen, Shunbo Li, Xi Xiang Zhang, Henri Benisty and Weijia Wen*, “Real time hybridization studies by resonant waveguide gratings using nanopattern imaging for Single Nucleotide Polymorphism detection”, Biomed Microdevices, 2014, 16, 287.
[9] Jiao Xie, Li Wang, Zhongwei Liao, Yingzhou Huang*, Shunbo Li*, Shuxia Wang, Weijia Wen, “Selective plasmonic trapping in periodic gold polygon tetramers”, Superlattices and Microstructures, 2014, 75, 593.
[10] Shunbo Li, Wenbin Cao, Yu Sanna Hui and Weijia Wen, “Simple and reusable picoinjector for liquid delivery via nanofluidics approach”, Nanoscale Research Letters, 2014, 9, 147.
[11] Ming Li, Shunbo Li, Wenbin Cao, Weihua Li*, Weijia Wen* and Gursel Alici, “Continuous manipulation and separation of particles using combined obstacle-and curvature-induced DC dielectrophoresis” Elelctrophoresis, 2013, 34, 952.
[12] Shunbo Li, Ming Li, Kristelle Bougot-Robin, Wenbin Cao, Irene Yeung Yeung Chau, Weihua Li, and Weijia Wen*, “High-throughput particle manipulation by hydrodynamic, electrokinetic, and dielectrophoretic effects in an integrated microfluidic chip”. Biomicrofluidics, 2013, 7, 024106.
[13] Shunbo Li, Ming Li, Yu Sanna Hui, Wenbin Cao, Weihua Li, Weijia Wen* "A novel method to construct 3D electrodes at the side wall of microfluidic channel" Microfluid Nanofluid, 2013, 14, 499.
[14] Ming Li, Shunbo Li, Wenbin Cao, Weihua Li*, Weijia Wen* and Gursel Alici "Improved concentration and separation of particles in a 3D dielectrophoretic chip integrating focusing, aligning and trapping" Microfluid Nanofluid, 2013,14, 527.
[15] Limu Wang, Rimantas Kodzius, Xin Yi, Shunbo Li, Yu Sanna Hui and Weijia Wen* "Prototyping chips in minutes: Direct Laser Plotting (DLP) of functional microfluidic structures" Sensors and Actuators B, 2012, 168, 214.
[16] Ming Li, Shunbo Li, Jinbo Wu, Weijia Wen*, Weihua Li*, Gursel Alici, “A simple and cost-effective method for fabrication of integrated electronic-microfluidic devices using a laser-patterned PDMS layer”, Microfluid Nanofluid, 2012, 12, 751.
联系方式:
地 址:重庆市沙坪坝区重庆大学A区微系统中心322室
E-mail:shunbo.li@cqu.edu.cn