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鄧巍巍
教授
系主任
0755-88018157
dengww@sustech.edu.cn

教育背景

◆ 1995 - 1999 清華大學(xué) 學(xué)士
◆ 1999 - 2001 清華大學(xué) 碩士
◆ 2003 - 2008 耶魯大學(xué) 博士

 

工作經(jīng)歷

◆ 2008.6 - 2010.6 耶魯大學(xué) 博士后
◆ 2010.6 - 2015.8 University of Central Florida 助理教授
◆ 2015.8 - 2017.5 Virginia Tech 副教授
◆ 2017.5 - 至今 南方科技大學(xué) 教授

 

研究方向

◆ 實(shí)驗(yàn)流體動(dòng)力學(xué),微納尺度流動(dòng)
◆ 精準(zhǔn)霧化,靜電噴霧
◆ 先進(jìn)材料的霧化,打印,噴涂

 

所獲榮譽(yù)

◆ 美國(guó)NSF CAREER Award (2015)

 

代表論文 (* 通訊作者,IF:impact factor)

◆ H. Yi, L. H. Qi, J. Luo, W.Deng, Pinhole Formation from Liquid Metal Microdroplets Impact on Solid Surfaces,Applied Physics Letters, 108, 041601, 2016. (IF=3.3)

◆ S. Novak, D. E. Johnston, C. Li, W. Deng*, K. Richardson, Deposition of Ge23Sb7S70 chalcogenide glass films by electrospray, Thin Solid Films, 588, 56-60, 2015. (IF=2.0)

◆ C. Li, K. Krueger, W. Yang, H. Duan, and W. Deng*, Gas-focused Liquid Microjets from a Slit, Physics of Fluids, 27, 032101 (10 pages) 2015. (IF=1.9)

◆ W. Yang, H. Duan, C. Li, and W. Deng*, Crossover of varicose and whipping instabilities in electrified micro jets, Physical Review Letters, 112, 054501, 2014. (封面文章. IF=7.4)

◆ X. Zhao, W. Yang, C. Li, Z. Gao, B. Mi, Z. Chen, W. Huang, and W. Deng*, Effects of Damkh?ler number of evaporation on the morphology of active layer and the performance of organic heterojunction solar cells fabricated by electrospray method, Solar Energy Materials and Solar Cells, 134: 140-147, 2015. (IF=5.2)

◆ X. Zhao, X. Wang, S. Lim, D. Qi, R. Wang, Z. Gao, B. Mi, Z. Chen, W. Huang, and W. Deng*, Enhancement of the performance of organic solar cells by electrospray deposition with optimal solvent system, Solar Energy Materials and Solar Cells, 121: 119-125, 2014. (IF=5.2)

◆ H. Duan, W. Yang, C. Li, B. Lojewski, and W. Deng*, Scalable generation of strictly monodisperse droplets by transverse electro-hydrodynamic excitations, Aerosol Science and Technology, 47:1174-1179, 2013. (IF=2.8)

◆ H. Duan, C. Li, W. Yang, L. An, and W. Deng*, Near-field electrospray micro printing of polymer derived ceramics, Journal of Microelectromechanical Systems, 22:1, 1-3, 2013. (IF=2.1)

◆ B. Lojewski, W. Yang, H. Duan, C. Xu, and W. Deng*, Design, Fabrication and characterization of linear multiplexed electrospray atomizers micro-machined from metal and polymers, Aerosol Science and Technology, 47:146-152, 2013. (IF=2.8)

◆ W. Yang, B. Lojewski, Y. Wei, and W. Deng*, Interactions and deposition patterns of multiplexed electrosprays, Journal of Aerosol Science, 46, 20-33, 2012. (IF=2.8)

◆ W. Deng* and A. Gomez, Full transient response of Taylor cones to a step change in the electric field, Microfluidics and Nanofluidics, 12:1, 383-393, 2012. (IF=3.4)

◆ W. Deng and A. Gomez, Electrospray cooling for microelectronics, International Journal of Heat and Mass Transfer, 54, 2270-2275, 2011. (IF=2.6)

◆ W. Deng, and A. Gomez, The role of electric charge in microdroplets impacting on conducting surfaces, Physics of Fluids, 22:51703, 2010. (IF=1.9)

◆ W. Deng, C.M. Waits, B. Morgan, and A. Gomez, Compact multiplexing of monodisperse electrosprays, Journal of Aerosol Science, 40, 907-918, 2009. (IF=2.8)

◆ W. Deng and A. Gomez, Influence of Space charge on the scale-up of multiplexed electrosprays, Journal of Aerosol Science, 38, 1062-1078, 2007. (IF=2.8)

◆ W. Deng, J. Klemic, X. Li, M. Reed and A. Gomez, Increase of electrospray throughput using multiplexed microfabricated sources for the generation of monodisperse Droplets, Journal of Aerosol Science, 37, 696-714, 2006. (IF=2.8)

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