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Sun Daoheng

Professor Sun Daoheng

Ph.D. Supervisor

Email: sundh@xmu.edu.cn

Address: Room 221, Aerospace Building, Xiang'an Campus, Xiamen University



Education


[1] March 1994 - March 1997, Northeastern University, Ph.D. in Mechanical Engineering

[2] September 1987 - June 1990, Northeastern University, M.S. in Mechanical Engineering

[3] September 1984 - June 1987, Northeastern University, B.S. in Mechanical Engineering




Research Interests

Micro-Nano Electro-Mechanical Systems (MEMS/NEMS), Microfluidic Technology, Flexible and Curved Conformable Sensing and Actuating Devices, Flexible Electronics Manufacturing Technology, EHD Printing Technology, Micro-Nano 3D Printing, Nanofiber Manufacturing and Applications, etc.




Teaching Positions

From 1990 to 1997, served as a teaching assistant and lecturer in the Department of Mechanical Principles and Mechanical Parts at Northeastern University. Joined the Department of Mechanical and Electrical Engineering at Xiamen University as an associate professor in June 1999 and became a professor in 2001. Served as the deputy director and director of the Department of Mechanical and Electrical Engineering at Xiamen University, and also served as the vice dean of the School of Aeronautics and Astronautics at Xiamen University. From January 2004 to December 2005, was a visiting researcher in MEMS/NEMS at the Department of Mechanical Engineering and BSAC, University of California, Berkeley, funded by the Berkeley Scholarship Program.


Main Courses Taught: "Principles of Mechanics" (Undergraduate), "Microfluidic Technology and Its Applications" (Graduate)





Research Projects

1. National Natural Science Foundation of China Key Project, Basic Research on Design and 3D Printing Manufacturing of Microfluidic Systems Based on Logic Gates (U1505243) 2016/01-2019/12

2. National Natural Science Foundation of China General Project, Research on Fluid Encapsulation and Extrusion Behavior and Regulation for Electrospinning Direct Writing (51475398) 2015/01-2018/12

3. Shenzhen Science and Technology Plan Project, Research on the Mechanism of On-Demand Droplet Formation and Precision Valve for Piezoelectric Driven Jetting (JCYJ20170818141912229) 2018/03-2021/03

4. Fujian Provincial Department of Ocean and Fisheries, Research on Key Technologies for Ship Anti-Capsizing Based on Vector Helical Propulsion Rudder (Fujian Ocean High-Tech [2016] No. 13) 2016/01-2018/12

5. Fujian Province Industry-Academia Research Major Project, Development and Application of Key Processes for Inkjet Manufacturing of Flexible Circuits (2012H6022) 2012/04-2015/03

6. National Natural Science Foundation of China Key Project, Dynamics Behavior and Multifield Regulation in Scale-Crossing Inkjet Manufacturing of Flexible Electronics (51035002), 2011-2014

7. AVIC Industry-Academia Research Project: Development of MEMS Pressure Sensors and Gyroscope Sensitive Elements

8. Aerospace Science and Technology Project: Development of SiC Capacitive Pressure Sensor Sensitive Elements (Three Phases)



Invention Patents

[1] Sun Daoheng, Mei Xue Cui, Zhu Ping, Li An Lin, Zhang Peng Cheng, A Micropore Batch Electrospinning Device Based on the Weissenberg Effect, December 29, 2017, China, ZL201610203259.5.

[2] Sun Daoheng, Wang Huan, Yang Bing Zhen, Wang Ling Yun, Zhan Zhan, A Method for Preparing Piezoelectric Polyvinylidene Fluoride Nanofiber Touch Screen Sensitive Elements, November 24, 2017, China, ZL201510008436X.

[3] Sun Daoheng, Wang Wei, Zheng Gao Feng, Zheng Jian Yi, Zhuang Ming Feng, Huang Wei Wei, A Rotating Liquid Supply Electrospinning Device, February 22, 2017, China, ZL201410063423.8.

[4] Sun Daoheng, Qiu Xiao Chun, Wu De Zhi, He Guang Qi, Chen Yan Jun, Huang Shao Hua, A Method for Manufacturing Polymer Solar Cell Light Trapping Structures, June 1, 2016, China, ZL201310354929X.

[5] Sun Daoheng, Zhan Zhan, He Jie, Du Xiao Hui, Yu Ling Ke, Li Yi Pan, Wang Ling Yun, A Method for Preparing Micro-Device Movable Structures Based on Silicon/Glass Anode Bonding, April 6, 2016, China, ZL2013101122001.

[6] Sun Daoheng, He Jie, Wu De Zhi, Zhan Zhan, Du Xiao Hui, Wang Ling Yun, Zhou Ru Hai, Wang Xiao Ping, A Method for Preparing a Horizontal Array of Carbon Nanotubes, March 9, 2016, China, ZL2013101972044.

[7] Sun Daoheng, Liu Hai Yan, Zhuang Ming Feng, Wang Wei, Huang Wei Wei, Lin Yi Hong, He Guang Qi, Wang Xiang, Zheng Gao Feng, A Method for Preparing the Active Layer of Polymer Solar Cells, May 27, 2015, China, ZL2013101357789.

[8] Sun Daoheng, Wang Xiang, Zheng Gao Feng, Liu Hai Yan, Lin Yi Hong, He Guang Qi, Wei Jin, A Vacuum Electrospinning Device, May 13, 2015, China, ZL2012105643037.

[9] Sun Daoheng, Du Xiao Hui, Zhan Zhan, He Jie, Zhou Ru Hai, Cai Jian Fa, Wang Ling Yun, A Method for Preparing a High Aspect Ratio Comb-Tooth Gaps Silicon Micro-Inertial Device, April 8, 2015, China, ZL2013100850872.

[10] Sun Daoheng, Du Xiao Hui, Wang Ling Yun, Cai Jian Fa, Wang Xiao Ping, A Pressure Sensor Utilizing Electrostatic Negative Stiffness and Its Manufacturing Method, April 1, 2015, China, ZL2013101061703.




Selected Publications

1.Mei, Xuecui;Chen, Qinnan; Wang, Shihu; Wang, Wei; Wu, Dezhi; Daoheng Sun.The microscale Weissenberg effect for high-viscosity solution pumping at the picoliter level. Nanoscale,2018,10(15)7127-7137

2.Xiaojun Chen, Qinnan Chen, Dezhi Wu, Yuekun Zheng, Zhou Zhou, Kunpeng Zhang, Wenlong Lv, Yang Zhao, Liwei Lin, Daoheng Sun. Sonochemical and mechanical stirring synthesis of liquid metal nanograss structures for low‐cost SERS substrates. J Raman Spectrosc. 2018:1–10

3.Qinnan Chen, Xuecui Mei, Zhe Shen, Dezhi Wu, Yang Zhao, Lingyun Wang, Xiaojun Chen, Gonghan He, Zhe Yu, Ke Fang and Daoheng Sun.Direct write micro/nano optical fibers by near-field melt electrospinning. Optics Letters, 2017, 42(24): 5016-5019

4.Du, X., Wang, L., Li, A., Wang, L., & Sun, D.  High Accuracy Resonant Pressure Sensor With Balanced-Mass DETF Resonator and Twinborn Diaphragms. Journal of Microelectromechanical Systems, 2017. 26(1), 235-245

5.Wang, Shihu; Wang, Wei; Yu, Lingke; Zhan, Zhan; Sun, Daoheng. The fast fabrication of flexible electronic devices of graphene composites. Nanotechnology, 2016, 27(31): 31LT01

6.Liu, Yifang; Chen, Daner; Zhan, Zhan; Li, Chenlei; Zheng, Jianyi; Sun, Daoheng. Research on Glass Frit Deposition Based on the Electrospray Process. Materials, 2016, 9(4): 292

7.Du, Xiaohui; Liu, Yifang Li, Anlin; Zhou, Zhou; Sun, Daoheng; Wang, Lingyun. Laterally Driven Resonant Pressure Sensor with Etched Silicon Dual Diaphragms and Combined Beams. Sensors, 2016, 16(2): 158.

8.Yang Zhao, Bing Xu, Gaofeng Zheng, Jianyi Zheng, XiaochunQiu,Mingfeng Zhuang and Daoheng Sun. Improving the performance of IPMCs with a gradient in thickness. Smart Materials & Structures, 2013, 22(11):208-210

9.Xiang Wang, Gaofeng Zheng, Guangqi He, Jin Wei, Haiyan Liu,  Yihong Lin,  Jianyi Zheng, Daoheng Sun. Electrohydrodynamic direct-writing ZnO nanofibers for device applications. Materials Letters, 2013, 109(10):58-61

10.Tingping Lei, Xiaomei Cai, Xiang Wang, Lingke Yu, Xingwang Hu, Gaofeng Zheng, Wenlong Lv, Lingyun Wang, Dezhi Wu, Daoheng Sun and Liwei Lin. Spectroscopic evidence for a high fraction of ferroelectric phase induced in electrospun polyvinylidene fluoride fibers. Rsc Advances, 2013, 3(47):24952-24958.

11.Xu Lei, Sun Daoheng. Electrohydrodynamic printing under applied pole-type nozzle configuration. Applied Physics Letters, 2013, 102(2): 024101

12.Wang Xiang, Xu Lei, Zheng Gaofeng, Cheng Wei, Sun Daoheng. Pulsed electrohydrodynamic printing of conductive silver patterns on demand. SCIENCE CHINA Technological Sciences. 2012, Vol.55(6): 1603–1607.

13.Xu Lei, Wang Xiang, Lei Tingping, Sun Daoheng, Lin Liwei. Electrohydrodynamic Deposition of Polymeric Droplets under Low-Frequency Pulsation. Langmuir, 2011, 27(10): 6541-6548

14.孙道恒.液相纳米制造技术.国家自然科学基金委员会学科发展战略研究报告——纳米制造前沿综述,科学出版社,2009, 245-267

15.Sun Daoheng, Chang Chieh, Li Sha,Lin Liwei. Near-field electrospinning. Nano Letters, v 6, n 4, April, 2006, p 839-842. SCI/EI (06209876868)

16.Sun Daoheng, Hu Qiao, Xu Hao. Neurocomputing model for elastoplasticity. Computer Method in Applied Mechanics and Engineering, 2000,182(1-2): 177-186





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