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李金桦

 

 

姓名: 李金桦

职称:副教授

导师情况: 硕士生导师

电话:

传真:

     邮箱:jhli@scu.edu.cn

招生方向:机械电子工程、机械制造及其自动化、精密仪器及机械、测试计量技术及仪器

教育背景及工作经历
教育背景

2006.09-2010.07: 武汉理工大学复合材料与工程专业  学士

2010.09-2013.07: 武汉理工大学复合材料学专业  硕士

2012.10-2013.09: 日本东北大学  访学与研修

2014.10-2017.09: 日本东北大学机械系统设计工程专业  博士


工作经历

2013.12-2014.09::中科院重庆绿色智能技术研究院  研究助理

2017.12-2020.11::华为技术有限公司  高级工程师

2020.12-至     今:四川大学beat365手机版官方网站  副教授

总体介绍
 

主要从事MEMS机器感官、传感器融合系统、先进微纳加工等方面的研究。主持华为公司智能汽车创新技术项目1项、日本文部省科学研究助成基金项目1项,参与日本国家战略创新IoT技术开发项目、日本科技部JST-COI产学连携项目、日本学术振兴JSPS项目等共3项。曾入选“深圳市海外高层次引进人才”。

近年来在Applied Physics Letter, ACS Applied Materials & Interfaces, Journal of Power Sources, Microsystem & Nanoengineering, Journal of Micromechanics and Microengineering等期刊发表论文 18 篇,申请发明专利 2项。担任Applied Surface Science、Industrial & Engineer Chemistry、ACS Omega等期刊的审稿人。

开设课程
 
研究领域及在研项目
 

1)AR/MR人机交互显示

2)激光雷达与3D感知

3)MEMS传感器与可穿戴医疗电子

4)智能材料与器件化集成

授权专利
 
发表论文

(1) Z. An*, J. Li #, A. Kikuchi, Z. Wang, Y. Jiang, T. Ono. Mechanically strengthened graphene-Cu composite with reduced thermal expansion towards interconnect applications. Microsystem & Nanoengineering, 2019, 5:20. (cover story)

(2)  J. Li*, N.V. Toan, Z. Wang, T. Ono. Metal-assisted-chemical-etching of silicon nanowires for templating 3D graphene growth towards energy storage in microsystems. Journal of Micromechanics and Microengineering, 2019, 29: 55007.

(3) J. Li*, M. Zhu, Z. An, Z. Wang, M. Toda, T. Ono. Constructing in-chip micro-supercapacitors of 3D graphene nanowall /ruthenium oxides electrode through silicon-based microfabrication technique. Journal of Power Sources, 2018, 401:204-212.

(4) J. Li*, M. Zhu, Z. Wang, T. Ono. Engineering micro-supercapacitors of graphene nanowalls /Ni heterostructure based on microfabrication technology. Applied Physics Letter, 2016, 109:153901.

(5)  J. Li, Z. An, Z. Wang, M. Toda, T. Ono. Pulse-Reverse Electrodeposition and Micromachining of Graphene- Nickel Composite: An Efficient Strategy toward High-Performance Microsystem Application. ACS Applied Materials & Interfaces, 2016, 8: 3969-3976.

(6)  J. Li, T. Ono. Preparing 3D graphene nanowall-nickel hybrid electrode on quartz glass for on-chip micro- supercapacitors. Proceedings of 30th IEEE International Conference on Micro Electro Mechanical Systems (MEMS), 2017: 861-864.

(7)  J. Li, Z. An, T. Ono. Preparation of graphene-nickel nanocomposite for durable micromirror application. Proceedings of 29th IEEE International Conference on Micro Electro Mechanical Systems (MEMS), 2016: 554-557.

(8)  J. Li, Z. Wang, T. Ono. Deposition and micromachining of graphene nanowall towards high-performance microsystems. Proceedings of 16th IEEE International Conference on Nanotechnology, 2016: 624-626.

(9)  J. Li*, R. Weng, X. Di, Z. Yao. Gradient and Weather Resistant Hybrid Super-Hydrophobic Coating Based on Fluorinated Epoxy Resin. Journal of Applied Polymer Science, 2014, 131: 40955.

(10)  J. Li*, R. Weng. Preparation of Nano-SiO2/amino-modified polysiloxane hybrid superhydrophobic coating and thermal-stability characterization. J. Wuhan University of Tech.-Mater Sci Ed, 2014, 29:35-39.

(11)  Z. Wang, M. Kimura, N. Inomata, J. Li, T. Ono. Compact micro thermal sensor based on silicon thermocouple junction and suspended fluidic channel, IEEE Sensors Journal, 2020, 99, 1.

(12)  N.V. Toan, T.K. Tuoi, J. Li, N. Inomata, T. Ono. Liquid and solid states on-chip micro-supercapacitors using silicon nanowire-graphene nanowall-pani electrode based on microfabrication technology, Materials Research Bulletin, 2020, 131, 110977.

(13)  Z. Wang, J. Lv, J. Li, Y. Wang, J. Sun. Fabrication and evaluation of micro-channel array for flexible on- chip PEMFC by new evaluation method and self-made hot embossing system. Int J Adv Manuf Technol, 2020, 108, 1381–1387.

(14)  M. Zhu, J. Li, Naoki Inomata, Masaya Toda, Takahito Ono. Vanadium-doped molybdenum disulfide film- based strain sensors with high gauge factor. Applied Physics Express, 2019, 12(1):015003.

(15)  M. Zhu, K. Sakamoto, J. Li, N. Inomata, M. Toda, T. Ono. Piezoresistive strain sensor based on monolayer molybdenum disulfide continuous film deposited by chemical vapor deposition. Journal of Micromechanics and Microengineering, 2019, 29: 55002.

(16) T. Ono*, T. Nguyen, K. Samat, J. Li, N.V. Toan. Nanoengineered thermoelectric energy devices for IoT sensing applications, ECS Transactions, 2019, 92(4):163-168.

(17)  M. Zhu, J. Li, M. Toda, T. Ono. Microfabrication of scanning probe with NV centers in a selectively grown diamond-thin-film through xenon difluoride etching process. Journal of Micromechanics and Microengineering, 2017, 27: 125007.

(18)  Z. Wang, J. Li, M. Kimura, T. Ono. Protein addressing in packaged multi-channel by electro-click chemistry for calorimetry biosensor. Proceedings of 16th IEEE International Conference on Nanotechnology, 2016: 681-682.

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