Wang Guanghui

发布者:凌舒乐发布时间:2020-04-25浏览次数:159

Betway·必威(西汉姆联)官方网站-West Ham United




Wang Guanghui

Associate professor, College of Engineering and Applied Sciences, Nanjing University

Deputy director, Key Laboratory of Intelligent Optical Sensing and Light Control, Ministry of Education

Address: Rm. 510, Xiexin Building, 5 Pingcang Xiang, Gulou District

Emailwangguanghui@nju.edu.cn

Research Areas

Microfluidic manipulation and its biomedical applications; near-field optical tweezers and micro/nano-optical manipulation

Courses

Introduction to Optical Engineering (platform courses for sophomores)

Profile

Wang Guanghui is an associate professor at College of Engineering and Applied Sciences, Nanjing University (since 2013), deputy director of the Key Laboratory of Intelligent Optical Sensing and Light Control, Ministry of Education, and a doctoral talent under Jiangsu Province's “Entrepreneurship & Innovation” project.

Wang earned his Ph.D. in 2011 from School of Electrical and Electronic Engineering, Nanyang Technological University, and conducted his post-doc research at the Electronic Engineering Department, the Chinese University of Hong Kong, from 2011 to 2013.

He has led one project of the National Key Technology R&D Program (2016-2019) under the Ministry of Science and Technology, one project of the Young Scientists Fund Program (2014-2016) and one project of the General Program (2019-2020) of the National Natural Science Foundation (NNSF) in China. He also participated as the second applicant in a key project of NNSF (2016-2019).

In recent years, he has published or co-published over 40 SCI papers in international key journals and holds over 17 patents, with citations over 850.

Scientific Research Results

Main papers

[1] Xu, Wenhao, Wang, Yuye, Jiao, Wenxiang, Wang, Feng, Xu, Xiaofu, Jiang, Min, Ho, Ho-pui, & Wang, Guanghui. (Accepted 2019). Tunable optofluidic sorting and manipulation on micro-ring resonators from a statistic perspective. Opt. Lett., 44(13), 3226.

[2] Chu, Qian, Jin, Zhiqiang, Yu, Xingtao, Li, Caoxin, Zhang, Weihua, Ji, Wenbing, Lin, Bo, Shum, Perry Ping, Zhang, Xuping, & Wang, Guanghui. (2019). Volumetric enhancement of Raman scattering for fast detection based on a silver-lined hollow-core fiber. Opt. Express, 27, 10370-10382.

[3] Jiang, Min, Wang, Guanghui, Xu, Wenhao, Xu, Xiaofu, Ji, Wenbin, Zou, Ningmu, & Zhang, Xuping. (2019). Integrated optofluidic micro-pumps in micro-channels with uniform excitation of a polarization rotating beam. Opt. Lett., 44, 53-56.

[4] Xu, Xiaofu, Wang, Guanghui, Jiao, Wenxiang, Ji, Wenbin, Jiang, Min, & Zhang, Xuping. (2018). Multi-level sorting of nanoparticles on multi-step optical waveguide splitter. Opt. Express, 26, 29262-29271.

[5] An Ran, Wang Guanghui*, Ji Wenbin, Jiao, Wenxiang, Jiang, Min, Chang, Yao, Xu, Xiaofu, Zou, Ningmu, & Zhang, Xuping. (2018). Controllable trapping and releasing of nanoparticles by a standing wave on optical waveguides, Opt. Lett., 43, 3901-3904.

[6] Jiang, Min, Wang, Guanghui*, Xu, Wenhao, Ji, Wenbinbin, Zou, Ningmu, Ho Ho-pui, & Zhang, Xuping. (2018). Two-dimensional arbitrary nano-manipulation on plasmonic metasurface. Opt. Lett. 43(7), 1602.

[7] Tang, Minghui, Huang, Xinyu, Chu, Qian, Ning, Xinghai, Wang, Yuye, Kong, Siukai, Zhang, Xuping, Wang, Guanghui*, & Ho Ho-pui*. (2018). A linear concentration gradient generator based on multi-layered centrifugal microfluidics and its application in antimicrobial susceptibility testing. Lab on a Chip, 18, 1452.

[8] Wang, Guanghui*, Tan, Jie, Tang, Minghui, Zhang, Changbin, Zhang, Dongying, Ji, Wenbin, Chen, Junhao, Ho Ho-pui*, & Zhang, Xuping. (2018). Binary centrifugal microfluidics enabling novel, digital addressable functions for valving and routing. Lab on a Chip, 18, 1197.

[9] Jin, Zhiqiang, Chu, Qian, Xu, Wenhao, Cai, Hao, Ji, Wenbin, Wang, Guanghui*, Lin, Bo, & Zhang, Xuping. (2018). All-fiber Raman Biosensor by Combining Reflection and Transmission Mode. IEEE Photonics Technology Letters, 30(4), 387-390.

[10] Xu, Xiaofu, Dong, Yuming, Wang, Guanghui*, Jiao, Wenxiang, Ying, Zhoufeng, Ho, Ho-pui, & Zhang, Xuping. (2018). Reconfigurable Sorting of Nanoparticles on a Thermal Tuning Silicon Based Optofluidic Chip. IEEE Photonics Journal, 10(1), 4900107.

[11] Li, Boli, Li, Danran, Chen, Jinhui, Liu, Zengyong, Wang, Guanghui, Zhang Xuping, & Lu, Yanqing. (2018). Hollow core micro-fiber for optical wave guiding and microfluidic manipulation. Sensors and Actuators B, 262, 953–957.

[12] Jiang, Min, Wang, Guanghui*, Jiao, Wenxiang, Ho, Ho-pui, & Zhang, Xuping. (2017). Plasmonic non-concentric nano-rings array as unidirectional nano-optical conveyor belt actuated by polarization rotation. Optics Letters, 42(2), 259-262.

[12] Jiang, Min, Wang, Guanghui*, Jiao, Wenxiang, Ho, Ho-pui, & Zhang, Xuping. (2017). Plasmonic non-concentric nano-rings array as unidirectional nano-optical conveyor belt actuated by polarization rotation. Optics Letters, 42(2), 259-262.

[13] Fan, Danyun, Jin, Zhiqiang, Wang, Guanghui*, Xu, Fei, Lu, Yanqing, Hu, Dora Juan-Juan, Wei, Lei, Shum, Ping, & Zhang, Xuping. (2017). Extremely high-efficiencycoupling method for hollow-core photonic crystal fiber. IEEE Photonics Journal, 9(3), 7104108.

[14] Tang, Minghui, Loo, Jacky Fong-Chuen, Wang, Yuye, Zhang, Xuping, Kwok, Ho-Chin, Hui, Mamie, Leung, Czarina Chi-Hung, Kong, Siu-Kai, Wang, Guanghui,* & Ho, Ho-Pui.* (2017). Motor-assisted chip-in-a-tube (MACT): A new 2- and 3-dimensional centrifugal microfluidic platform for biomedical applications. Lab on a Chip, 17, 474-483.

[15] Ying, Zhoufeng, Wang, Guanghui*, Jiang, Min, Jiao, Wenxiang, Zhang, Xuping, & Chen, Ray T. (2016). Extraordinary optical transmission in a hybrid plasmonic waveguide. IEEE Photonics Journal, 8 (5), 4502107.

[16] Ding, Zhaoxiong, Zhang, Dongying, Wang, Guanghui*, Tang, Minghui, Ho, Ho-Pui, & Zhang, Xuping. (2016). An In-line Spectrophotometer on Centrifugal Microfluidics Platform for Real-time Protein Determination and Calibration. Lab on a Chip, 16, 3604.

[17] Jiao, Wenxiang, Wang, Guanghui*, Ying, Zhuofeng, Kang, Zhiwen, Sun, Tianyu, Zou, Ningmu, Ho, Ho-Pui, & Zhang, Xuping. (2016). Optofluidic switching of nanoparticles based on a WDM tree splitter. IEEE Photonics Journal, 8 (3), 7803010.

[18] Jiao, Wenxiang, Wang, Guanghui*, Ying, Zhoufeng, Zou, Y. Ho, Ho-Pui, Sun, Tianyu, Huang, Ying, & Zhang, Xuping. (2016). The switching of nanoparticles in large-scale hybrid electro-optofluidics integration. Optics Letters, 41 (11), 2652-2655. [19] Wang, Guanghui*; Jiao, Wenxiang, Dong, Yuming; Wei, Lei, Hu, Dora Juan-Juan, Shum, Ping, & Zhang, Xuping. (2016). The Numerical Modeling of 3D Micro Fiber Couplers and Resonators. IEEE Photonics Technology Letters, 28(15),1707-1710.

[20] Wang, Guanghui, Ying, Zhoufeng, Ho, Ho-Pui, Huang, Ying, Zou, Ningmu, & Zhang, Xuping. (2016). Nano-optical conveyor belt with waveguide-coupled excitation. Optics Letters, 41, 528-531.

[21] Tang, Minghui, Wang, Guanghui, Kong, Siu-Kai, & Ho, Ho-Pui. (2016). A Review of Biomedical Centrifugal Microfluidic Platforms. Micromachines, 7 (2), 26.

[22] Chen, Jiajie, Kang, Zhiwen, Wang, Guanghui, Loo, Jackey Fong-Chuen, Kong, Siu-Kai, & Ho, Ho-Pui. (2015). Optofluidic Guiding, Valving, Switching and Mixing based on Plasmonic Heating in Random Gold Nanoisland Substrate. Lab on a Chip, 15, 2504.

[23] Ying, Zhoufeng, Wang, Guanghui*, Zhang, Xuping, Huang, Ying, Ho, Ho-Pui, & Zhang, Yixin. (2015). Ultracompact TE-pass polarizer based on a hybrid plasmonic waveguide. IEEE Photonics Technology Letters, 27, 201-204.

[24] Ying, Zhoufeng, Wang, Guanghui*, Zhang, Xuping, Ho, Ho-pui, & Huang, Ying. (2015). Ultracompact and broadband polarization beam splitter based on polarization-dependent critical guiding condition. Opt. Lett., 40, 2134-2137.

[25] Ho, Ho-Pui, Lau, Pui-Man, Kwok, Ho-Chin, Wu, Shu-Yuen, Gao, Minghui, Cheung, Anthony Ka-Lun, Chen, Qiulan, Wang, Guanghui, Kwan, Yiu-Wa, & Wong, Chun-Kwok. (2014). Allergen screening bioassays: recent developments in lab-on-a-chip and lab-on-a-disc systems. Bioanalysis, 6, 2005-2018.

[26] Wang, Guanghui, H. Ho-Pui, Chen, Qiulan, Yang, Alice Kar-Lai, Kwok, Ho-Chin, Wu, Shu-Yuen, Kong, Siu-Kai, Kwan, Yiu-Wa, & Zhang, Xuping. (2013). A Lab-in-a-droplet Bioassay Strategy for Centrifugal Microfluidics with Density Difference Pumping, Power to Disc and Bidirectional Flow Control. Lab on a Chip, 13, 3698.

[27] Wo, Jianghai, Wang, Guanghui, Cui, Ying, Sun, Qizhen, Liang, Ruibing; Shum, Ping, & Liu, Deming. (2012). Refractive index sensor using microfiber-based Mach–Zehnder interferometer. Optics Letters, 37, 67-69.

[28] Wang, Guanghui, Shum, Perry Ping, Ho, Ho-Pui, Yu, Xia, Hu, Dora Juan-Juan, Cui, Ying, Tong, Limin, & Lin, Chinlon. (2011). Modeling and analysis of localized biosensing and index sensing by introducing effective phase shift in microfiber Bragg grating (µFBG). Optics express, 19, 8930-8938.

[29] Wang, Guanghui, Shum, Perry Ping, Tong, Limin, Li, Changming, & Lin, Chinlon. (2010). Polarization effects in microfiber loop and knot resonators. IEEE Photonics Technology Letters, 22, 586-588.

Graduate Student Advisement and Student Achievements

1. Ying Zhoufeng, Outstanding Graduate Student of Jiangsu Province (2016)

2. National scholarships winners: Ying Zhoufeng (2015), Wang Yuye (2015), Jiao Wenxiang (2013).

3. Students with early graduation: Ying Zhoufeng (2016), Jiao Wenxiang (2017).

Group Awards on Industrialization Development

1. Outstanding Winner, the Fourth Business Plan Competition of Nanjing University (2016).

2. Outstanding Winner, Selection Match of Nanjing University, the Fifteenth “Challenge Cup” National Undergraduate Curricular Academic Science and Technology Works Race (2017).

3. “Portable Molecule Diagnosing Instrument” based on microfluidic manipulation technology on Jiangsu University Students’ Science and Technology Works Exhibition (2017).