基本情况
职 称:副教授
学 位:博士
毕业学校:新加坡南洋理工大学
电子邮件:wujin8@mail.sysu.edu.cn
教育背景
2011-2014年,新加坡南洋理工大学,博士
2008-2011年,华中科技大学,工学硕士
2004-2008年,武汉理工大学,工学学士
工作履历
2017年9月-至今,中山大学,电子与信息工程学院,副教授
2014-2017年,新加坡南洋理工大学, 新加坡-麻省理工学院联盟(SMART)项目博士后研究员
学术兼职
担任ACS Nano, Materials Horizons, Small, IEEE Electron Device Letters, Journal of Materials Chemistry A, ACS Applied Materials & Interfaces, ACS Materials Letters, Nanoscale Advances, 2D materials, Chemical Engineering Journal, SCIENCE CHINA Materials, Nanoscale, Journal of Materials Chemistry C, Journal of Materials Chemistry B等几十个SCI期刊的审稿人。
广东省科学技术厅专家评审委员。
担任SCI期刊(Materials 和 Frontiers in Materials)的编委
担任期刊Materials International 的编委
研究领域
电子科学与技术、微电子、集成电路、生物医学
研究方向
1、电子工程,材料工程, 生物医学工程, 物理,化学等多学科交叉
2、柔性/穿戴式/可拉伸电子、电路
3、微纳结构电子器件与材料
4、水凝胶电子
5、电子/离子皮肤,表皮电子,人机交互
6、气体、湿度、温度、应变、压力等多功能传感器与系统集成,以及健康医学和环境监测应用
主讲课程
本科生:电路理论基础、微纳电子器件
学术成果
【学术表现】
1. 吴进; 吴子轩, 气体传感器及其应用、设备和气体传感器的制备方法, 申请日:2018.12.27, 中国, 专利号:ZL201811614104.6 授权公告日:2020.08.25 授权公告号:CN 109490379 B
2. 吴进; 吴子轩, 湿度传感器及其应用、设备和湿度传感器的制备方法, 申请日:2018.12.27, 中国, 专利号:ZL201811614121.X 授权公告日:2020.08.25 授权公告号:CN 109490380 B
3. 吴进; 黄文轩; 吴子轩, 光学成像系统、方法、装置及存储介质, 申请日:2018.11.16, 中国, 专利号:201811365902.X 授权公告日:2020.09.29 授权公告号:CN 109297965 B
4. 吴进; 刘川; 李敏敏, 一种具有微纳图形结构的掩膜板制作方法和纳米光刻方法, 2018.3.12, 中国, 授权公告日:2021-1-22 专利号:ZL201810202020.5 授权公告号:CN108594595B
5. F. W. Huo, J. Wu, Apparatus and Methods for Investigating a Sample Surface. 美国专利,Patent No: US 10,168,353 B2.
【主要论著】
已发表SCI/EI论文90多篇,详情参见:https://www.researchgate.net/profile/Jin-Wu-4
部分SCI期刊论文 :
2021年
1. Z. Wu, X. Yang, J. Wu*. Conductive Hydrogel- and Organohydrogel-Based Stretchable Sensors. ACS Applied Materials & Interfaces 2021, 13, 2128−2144. (IF=8.7)
2. J. Wu*, W. Huang, Y. Liang, Z. Wu, B. Zhong, Z. Zhou, J. Ye, K. Tao*, Y. Zhou, X. Xie. Self-Calibrated, Sensitive and Flexible Temperature Sensor based on 3D Chemically Modified Graphene Hydrogel. Advanced Electronic Materials 2021, 2001084. (IF=6.59)
2020年
1. J. Wu*, Z. Wu, Y. Wei, H. Ding, W. Huang, X. Gui, w. shi, Y. Shen, K. Tao*, X. Xie. Ultrasensitive and Stretchable Temperature Sensor Based on Thermally Stable and Self-Healing Organohydrogels. ACS Applied Materials & Interfaces 2020, 12, 19069-19079. (IF=8.7, ESI高被引论文)
2. J. Wu*, Z. Wu, W. Huang, X. Yang, Y. Liang, K. Tao, B.-R. Yang, W. Shi*, X. Xie. Stretchable, Stable and Room-Temperature Gas Sensors Based on Self-Healing and Transparent Organohydrogel. ACS Applied Materials & Interfaces 2020. 12, 52070−52081. (IF=8.7)
3. H. Ding, Y. Wei, Z. Wu, K. Tao, M. Ding, X. Xie, J. Wu*. Recent Advances in Gas and Humidity Sensors Based on 3D Structured and Porous Graphene and Its Derivatives. ACS Materials Letters 2020, 2, 1381-1411.
4. J. Wu*, Z. Wu, H. Ding, Y. Wei, W. Huang, X. Yang, Z. Li, L. Qiu and X. Wang. Three-Dimensional Graphene Hydrogel Decorated with SnO2 for High-Performance NO2 Sensing with Enhanced Immunity to Humidity. ACS Applied Materials & Interfaces, 2020, 12, 2634-2643. (IF=8.7)
5. J. Wu*, H. Ding, Y. Chen, Y. Wei, Z. Wu, N. Wang, X. Xie, W. Shi*, X. Wang*, Revealing the Role of Surface Co-modification in Boosting the Gas Sensing Performance of Graphene Using Experimental and Theoretical Evidences, Sensors and Actuators B: Chemical, 2020, 316, 128162. (IF=7.1)
6. K. Tao*, H. Yi, Y. Yang, H. Chang, J. Wu*, L. Tang, Z. Yang, N. Wang, L. Hu, Y. Fu, J. Miao and W. Yuan*, Origami-inspired electret-based triboelectric generator for biomechanical and ocean wave energy harvesting. Nano Energy, 2020, 67, 104197. (IF=15.5, ESI高被引论文)
7. J. Wu*, Z. Wu, H. Ding, Y. Wei, W. Huang, X. Yang, Z. Li, L. Qiu* and X. Wang*, Flexible, 3D SnS2/Reduced Graphene Oxide Heterostructured NO2 Sensor. Sensors and Actuators B: Chemical, 2020, 305, 127445. (IF=7.1,ESI高被引论文)
8 J. Wu*, X. Yang, H. Ding, Y. Wei, Z. Wu, K. Tao*, B.-R. Yang, C. Liu, X. Wang, S. Feng*, X. Xie, Ultrahigh Sensitivity of Flexible Thermistors Based on 3D Porous Graphene Characterized by Imbedded Microheaters. Advanced Electronic Materials 2020, 2000451. (IF=6.59)
9. Han, S.; Liu, C.; Lin, X.; Zheng, J. Wu*; Liu, C*. Dual Conductive Network Hydrogel for a Highly Conductive, Self-Healing, Anti-Freezing, and Non-Drying Strain Sensor. ACS Applied Polymer Materials 2020, 2, 996-1005. (ESI高被引论文)
10. J. Wu*, Y. Wei, H. Ding, Z. Wu, X. Yang, Z. Li, W. Huang, X. Xie, K. Tao*, X. Wang*. Green Synthesis of 3D Chemically Functionalized Graphene Hydrogel for High-Performance NH3 and NO2 Detection at Room Temperature. ACS Applied Materials & Interfaces 2020, 12, 20623-20632. (IF=8.7)
11. K. Tao*, H. Yi, Y. Yang, L. Tang, Z. Yang, J. Wu*, H. Chang, W. Yuan*, “Muria-Origami Inspired Electret/Triboelectric Power Generator for Wearable Energy Harvesting with Water-Proof Capability”, Microsystems & Nanoengineering, 2020, 6, 56. (IF=5)
2019年
1. J. Wu*, Z. X. Wu, H. H. Xu, Q. Wu, C. Liu, B. R. Yang, X. Q. Gui, X. Xie, K. Tao*, Y. Shen*, J. M. Miao and L. K. Norford, An intrinsically stretchable humidity sensor based on anti-drying, self-healing and transparent organohydrogels. Materials Horizons 2019, 6, 595-603. (IF=12.3, ESI高被引论文, 2019 Material Horizon Most Popular Article)
2. J. Wu*, Z. X. Wu, S. J. Han, B. R. Yang, X. C. Gui, K. Tao*, C. Liu*, J. M. Miao and L. K. Norford, Extremely Deformable, Transparent and High-Performance Gas Sensor Based on Ionic Conductive Hydrogel. ACS Applied Materials & Interfaces 2019, 11, 2364-2373. (IF=8.7, ESI高被引论文)
3. J. Wu*, Z. Wu, X. Lu, S. Han, B.-R. Yang, X. Gui, K. Tao*, J. Miao and C. Liu*, Ultrastretchable and Stable Strain Sensors Based on Anti-freezing and Self-healing Ionic Organohydrogels for Human Motion Monitoring, ACS Applied Materials & Interfaces, 2019, 11, 9405-9414. (IF=8.7, ESI高被引论文)
4. K. Huang#, J. Wu#, Z. Chen, H. Xu, Z. Wu, K. Tao, T. Yang, Q. Wu, H. Zhou, B. Huang, H. Chen, J. Chen and C. Liu*. Nanostructured High-Performance Thin-Film Transistors and Phototransistors Fabricated by a High-Yield and Versatile Near-Field Nanolithography Strategy. ACS Nano 2019, 13, 6618-6630. (IF=13.903)
5. J. Wu*, Z. Wu, H. Ding, Y. Wei, X. Yang, Z. Li, B.-R. Yang, C. Liu, L. Qiu* and X. Wang*, Multifunctional and High-Sensitive Sensor Capable of Detecting Humidity, Temperature, and Flow Stimuli Using an Integrated Microheater. ACS Applied Materials & Interfaces, 2019, 11, 43383-43392. (IF=8.7)
6. J. Wu*, Z. Wu, H. Ding, X. Yang, Y. Wei, M. Xiao, Z. Yang, B.-R. Yang, C. Liu, X. Lu, L. Qiu and X. Wang*, Three-Dimensional-Structured Boron and Nitrogen Doped Graphene Hydrogel Enabling High-Sensitive NO2 Detection at Room Temperature. ACS Sensors, 2019, 4, 1889−1898. (IF=7.3)
7. J. Wu*, Y.-M. Sun*, Z. Wu, X. Li, N. Wang, K. Tao and G. P. Wang*, Carbon Nanocoil-Based Fast-Response and Flexible Humidity Sensor for Multifunctional Applications. ACS Applied Materials & Interfaces, 2019, 11, 4242–4251. (IF=8.7, ESI高被引论文)
8. Songjia Han, Chunrui Liu, Zhaobin Huang, Jiwen Zheng, Huihua Xu*, Sheng Chu, Jin Wu* and Chuan Liu*, High-Performance Pressure Sensors Based on 3D Microstructure Fabricated by a Facile Transfer Technology. Advanced Materials Technologies, 2019, 4, 1800640. (IF=5.96)
9. J. Wu*, Z. Wu, K. Tao, C. Liu, B.-R. Yang, X. Xie and X. Lu*. Rapid-response, reversible and flexible humidity sensing platform using a hydrophobic and porous substrate. Journal of Materials Chemistry B 2019, 7, 2063-2073. (IF=5.3)
10. K. Tao, H. Yi, L. Tang, J. Wu*, P. Wang, N. Wang, L. Hu, Y. Fu, J. Miao* and H. Chang*. Piezoelectric ZnO thin films for 2DOF MEMS vibrational energy harvesting. Surface and Coatings Technology 2019, 359, 289-295. (ESI高被引论文,热点论文)
11. X. Lu*, S. Yang, H. Jiang and J. Wu*. Monolithic integration of GaN LEDs with vertical driving MOSFETs by selective area growth and band engineering of the p-AlGaN electron blocking layer though TCAD simulation. Semiconductor Science and Technology 2019, 34 (6), 064002.
2018年
1. Jin Wu,* Zhong Li, Xi Xie, Kai Tao, Chuan Liu,* Khiam Aik Khor, Jianmin Miao* and Leslie K. Norford, 3D superhydrophobic reduced graphene oxide for activated NO2 sensing with enhanced immunity to humidity, Journal of Materials Chemistry A, 2018, 6, 478–488.
2. Jin Wu, Songjia Han, Tengzhou Yang, Zhong Li, Zixuan Wu, Xuchun Gui, Kai Tao*, Jianmin Miao, Leslie K. Norford, Chuan Liu*, Fengwei Huo, Highly Stretchable and Transparent Thermistor Based on Self-Healing Double Network Hydrogel, ACS Applied Materials & Interfaces 2018, 10, 19097−19105.
3. Kai Tao, Lihua Tang,* Jin Wu,* Sun Woh Lye, Honglong Chang and Jianmin Miao, Investigation of Multimodal Electret-based MEMS Energy Harvester with Impact-induced Nonlinearity, IEEE Journal of Microelectromechanical Systems 2018, 27 (2), 276-288. (ESI热点论文,高被引论文,获美国机械工程协会(ASME)智能材料与结构分会2019年度最佳论文奖,并入选2018年中国百篇最具影响力国际学术论文)
4. Jin Wu, Shuanglong Feng, Zhong Li, Kai Tao, Jin Chu*, Jianmin Miao* and Leslie K. Norford, Boosted sensitivity of graphene gas sensor via nanoporous thin film structures, Sensors and Actuators B: Chemical, 2018, 255, 1805-1813.
5. Chunrui Liu, Songjia Han, Huihua Xu, Jin Wu,* Chuan Liu,* A multifunctional highly sensitive multiscale stretchable strain sensor based on a graphene/glycerol–KCl synergistic conductive network, ACS Applied Materials & Interfaces 2018, 10, 31716–31724.
2017年以前
1. Jin Wu, Shuanglong Feng,* Xingzhan Wei, Jun Shen, Wenqiang Lu, Haofei Shi, Kai Tao, Shirong Lu, Tai Sun, Leyong Yu, Chunlei Du, Jianmin Miao* and Leslie K. Norford, Facile Synthesis of 3D Graphene Flowers for Ultrasensitive and Highly Reversible Gas Sensing, Advanced Functional Materials, 2016, 26(41):7462-7469. (IF=15.621)
2. Jin Wu, Kai Tao, Yuanyuan Guo, Zhong Li, Xiaotian Wang, Zhongzhen Luo, Shuanglong Feng,* Chunlei Du, Di Chen, Jianmin Miao* and Leslie K. Norford,A 3D Chemically Modified Graphene Hydrogel for Fast, Highly Sensitive and Selective Gas Sensor,Advanced Science, 2016, 3, 1600319. (IF=15.804)
3. Jin Wu, Kai Tao, Jing Zhang, Yuanyuan Guo, Jianmin Miao* and Leslie K. Norford, Chemically functionalized 3D graphene hydrogel for high performance gas sensing. Journal of Materials Chemistry A, 2016, 4, 8130-8140. (IF=10.733)
4. Jin Wu, Kai Tao, Jianmin Miao* and Leslie K. Norford, Improved Selectivity and Sensitivity of Gas Sensing Using 3D Reduced Graphene Oxide Hydrogel with Integrated Microheater. ACS Applied Materials & Interfaces 2015, 7, 27502-27510. (IF=8.456)
5. Jin Wu, Kai Tao, Jianmin Miao* and Leslie K. Norford, Enhanced Gas Sensing by 3D Water Steamed Graphene Hydrogel, Solid State Electronics, 2017, 138(2017) 101-107.
6. Jin Wu, Chihao Liow, Kai Tao, Yuanyuan Guo, Xiaotian Wang and Jianmin Miao,* Large-Area Sub-wavelength Optical Patterning via Long-Range Ordered Polymer Lens Array. ACS Applied Materials & Interfaces 2016, 8, 16368-16378. (IF=8.456)
7. Jin Wu, Kai Tao, Jianmin Miao*, Production of centimeter-scale sub-wavelength nanopatterns by controlling the light path of adhesive photomask. Journal of Materials Chemistry C, 2015, 3, 6796-6808. (IF=6.641)
8. Jin Wu, Jianmin Miao*, Production of Centimeter-Scale Gradient Patterns by Graded Elastomeric Tip Array. ACS Applied Materials & Interfaces 2015, 7, 6991-7000.
9. Jin Wu, Xiaoli Zan, Shaozhou Li, Yayuan Liu, Chenlong Cui, Binghua Zou, Weina Zhang, Hongbo Xu, Hongwei Duan, Danbi Tian, Wei Huang, Fengwei Huo*, In situ synthesis of large-area single sub-10 nm nanoparticle arrays by polymer pen lithography. Nanoscale 2014, 6, 749-752.
10. Jin Wu, Yayuan Liu, Yuanyuan Guo, Shuanglong Feng, Binghua Zou, Hui Mao, Cheng-han Yu, Danbi Tian, Wei Huang, and Fengwei Huo*, Centimeter-scale sub-wavelength photolithography using metal-coated elastomeric photomasks with modulated light intensity at the oblique sidewalls. Langmuir, 2015, 31, 5005-5013.
11. Jin Wu, Cheng-han Yu, Shaozhou Li, Binghua Zou, Yayuan Liu, Xiaoqun Zhu, Yuanyuan Guo, Hongbo Xu, Weina Zhang, Liping Zhang, Bin Liu, Danbi Tian, Wei Huang, Michael P. Sheetz and Fengwei Huo*, Parallel Near-field Photolithography with Metal-coated Elastomeric Masks. Langmuir, 2015, 31, 1210-1217.
12. J. Wu, J. Y. Yang,* H. Zhang, J. S. Zhang, S. L. Feng, M. Liu, J. Y. Peng, W. Zhu, T. Zou, Fabrication of Ag–Sn–Sb–Te based thermoelectric materials by MA-PAS and their properties. Journal of Alloys and Compounds 2010, 507, 167-171.
13. J. Wu, J.-Y. Yang,* J.-S. Zhang, G. Li, J.-Y. Peng, Y. Xiao, L.-W. Fu, Q.-Z. Liu, Thermoelectric Properties of Sn-Substituted AgPbmSbTem+2 via the Route of Mechanical Alloying and Plasma-Activated Sintering. Journal of Electronic Materials 2012, 41, 1100-1104.
14. R. C. Luo, J. Wu, N. Dinh, and C. H. Chen, Gradient Porous Elastic Hydrogels with Shape-memory Property and Anisotropic Responses for Programmable Locomotion, Advanced Functional Materials, 2015, 25, 7272-7279.
15. K. Tao, J. Wu, L. Tang, X. Xia, S. W. Lye, J. Miao and X. Hu, A novel two-degree-of-freedom MEMS electromagnetic vibration energy harvester, Journal of Micromechanics and Microengineering, 2016, 26, 035020.
16. X. L. Zan, Z. Fang, J. Wu, F. Xiao, F. W. Huo, H. W. Duan, Freestanding graphene paper decorated with 2D-assembly of Au@Pt nanoparticles as flexible biosensors to monitor live cell secretion of nitric oxide. Biosensors & Bioelectronics 2013, 49, 71-78.
17. Ren Cai, Dan Yang, Jin Wu, Liqin Zhang, Cuichen Wu, Xigao Chen, Yanyue Wang, Shuo Wan, Fengwei Hou, Qingyu Yan and Weihong Tan, Fabrication of Ultrathin Zn(OH)2 Nanosheets as Drug Carriers. Nano Research, 2016, 9, 2520-2530.
18. Kai Tao, Jin Wu, Lihua Tang, Liangxing Hu, Sun Woh Lye and Jianmin Miao,Enhanced Electrostatic Vibrational Energy Harvesting Using Integrated Opposite-Charged Electrets,Journal of Micromechanics and Microengineering,2017, 27,044002.
【科研课题】
1、国家自然科学基金青年基金,2019.01-2021.12, 在研,主持
2、广东省基础与应用基础研究基金面上项目,2019.10-2022.09, 在研,主持
3、广东省自然科学基金自由申请项目,2018.05-2021.04,在研,主持
4、广州市科技计划项目一般项目,2019-2022,在研,主持
5、高校基本科研业务费中山大学青年教师培育项目,2019.01-2021.12,在研,主持
6、国家自然科学基金重点项目,2018/01-2022/12, 在研,学术骨干
7、国家自然科学基金面上项目,参加
【发明专利】
【学术会议报告】
奖励与荣誉