百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

Prof. Angus H L YIP

PhD University of Washington, USA
BSc MPhil The Chinese University of Hong Kong


Professor


Office: BOC-R7192
Phone: +(852)-3442-7649
Fax: +(852)-3442-0892
Email: a.yip@cityu.edu.hk
Web: https://www.yipgroup.info/

PhD University of Washington, USA
BSc MPhil The Chinese University of Hong Kong


Professor


Office: BOC-R7192
Phone: +(852)-3442-7649
Fax: +(852)-3442-0892
Email: a.yip@cityu.edu.hk
Web: https://www.yipgroup.info/

Prof. Angus Yip joined the Department of Materials Science and Engineering (MSE) and the School of Energy and Environmental (SEE) at CityU as a Professor in 2021. He started his academic career as a Professor in the State Key Laboratory of Luminescent Materials and Devices (SKLLMD) and the School of Materials Science and Engineering at South China University of Technology (SCUT), Guangzhou in 2013. Since 2017, he has also been serving as the Director of the Innovation Center for Printed Organic Photovoltaics in the South China Institute of Collaborative Innovation, Dongguan, which aims to promote technology transfer and commercialization of new photovoltaic technologies. He received his BSc and MPhil degrees in Materials Science from the Chinese University of Hong Kong, and completed his PhD degree studies in MSE at the University of Washington, Seattle in 2008.

Prof. Yip’s research is in the general area of solution processed optoelectronic materials and devices for energy generation and energy saving. His research focuses on understanding the structure-property relationships, device physics and photophysics, and device optimization of 1) organic solar cells, 2) perovskite solar cells and 3) perovskite LEDs. His research group is highly interdisciplinary, with research scientists, post-docs and students from various backgrounds including Materials Science, Environmental Science, Physics, Chemistry and Engineering. He has published over 220 papers in top journals such as Nature (1), Science (1), Nat. Photonics (1), Nat. Commun. (5), Adv. Mater. (26), Adv. Energy Mater. (22), Adv. Funct. Mater. (11), Energy Environ. Sci. (6), J Am. Chem. Soc. (6), Joule (6), etc., with a total number of citations at ~25000 and an H-index of 80 (as of Jan 2021). He was named 7 times consecutively as a “Highly Cited Researcher” between 2014 and 2020. He received over 10 national and provincial grants, with a total funding scale of over 50 million RMB. In addition to fundamental research, he also dedicated a significant amount of effort to promote translational research, targeting for the commercialization of new generation of solar cell technology.

Prof. Yip’s research group is seeking highly motivated graduates and postdoc candidates who have solid backgrounds in Environmental Science, Materials Science, Chemistry, Physics, Engineering or other related fields. The research group provides opportunities to all members to explore their interests and be involved in both fundamental research and technology translation in the energy field. Interested applicants with strong motivation to perform cutting-edge research are highly encouraged to join Prof. Yip’s research group. Qualified candidates are welcome to submit their applications with CV and copies of transcripts via email to Prof. Yip.

Research Areas

  1. New generation photovoltaic technology
  2. Emerging solid state lighting technology
  3. Flexible electronics
  4. Smart window technology
  5. Zero energy building

Research Expertise

  1. Processing-property relationship study of organic and hybrid perovskite electronic devices
  2. Device physics and photophysics of optoelectronic materials and devices
  3. Emerging light emitting materials and devices
  4. Printing and patterning techniques of flexible and large-area electronic devices
  5. Design of new photovoltaic technology for building integration
  6. Self-powered greenhouse with artificial lighting technology

Recent Publications (10 selected papers from >220 publications)

  1. Chen, Ziming; Li, Zhenchao; Chen, Zhen; Xia, Ruoxi; Zou, Guangruixing; Chu, Linghao; Su, Shi-Jian; Peng, Junbiao; Yip, Hin-Lap; Cao, Yong. (2021). Utilization of Trapped Optical Modes for White Perovskite Light-emitting Diodes with Efficiency Over 12%. Joule, in press.
    ? Presenting all-perovskite white LEDs with highest efficiency at time of publication
  2. Zhang, Guichuan, Chen, Xian-Kai; Chow, Philip C W; Zou, Yingping; Yan, He; Li, Ning; Brabec, Christoph J; Bredas, Jean-Luc; Yip, Hin-Lap; Cao, Yong, et al. (2020). Delocalization of Exciton and Electron Wavefunction in Non-Fullerene Acceptor Molecules Enables Efficient Organic Solar Cells. Nature Communications11, 3943.
    ? Presenting organic solar cells with record-high efficiency certified by National Renewable Energy Laboratory (NREL) at time of publication
  3. Xu, Xiang; Xiao, Jingyang; Zhang, Guichuan; Wei, Long; Jiao, Xuechen; Yip, Hin-Lap; Cao, Yong. (2020). Interface-enhanced organic solar cells with extrapolated T80 lifetimes of over 20 years. Science Bulletin65, 208.
    ? Highly cited paper
    ? Presenting organic solar cells with longest reported lifetimes
  4. Yuan, Jun; Zhang, Yunqiang; Zhou, Liuyang; Zhang, Guichuan; Yip, Hin-Lap; Lau, Tsz-Ki; Lu, Xinhui; Zhu, Can; Peng, Hongjian; Johnson, Paul A; Leclerc, Mario; Cao, Yong; Ulanski, Jacek; Li, Yongfang; Zou, Yingping. (2019). Single-junction organic solar cell with over 15% efficiency using fused-ring acceptor with electron-deficient core. Joule3, 1140.
    ? Hot paper; Highly cited paper
    ? Cell Press "paper of the year 2019” for the Physical Science field (only 4 papers awarded)
  5. Meng, Lingxian; Zhang, Yamin; Wan, Xiangjian; Li, Chenxi; Zhang, Xin; Wang, Yanbo; Ke, Xin; Xiao, Zuo; Ding, Liming; Xia, Ruoxi; Yip, Hin-Lap; Cao, Yong; Chen, Yongsheng. (2018). Organic and Solution Processed Tandem Solar Cells with 17.3% Efficiency. Science361, 1094.
    ? Hot paper; Highly cited paper
    ? Presenting organic tandem solar cells with record-high efficiency
  6. Tian, Jingjing; Xue, Qifan; Tang, Xiaofeng; Chen, Yuxuan; Li, Ning; Hu, Zhicheng; Shi, Tingting; Wang, Xin; Huang, Fei; Brabec, Christoph J; Yip, Hin-Lap; Cao, Yong. (2019). Dual Interfacial Design for Efficient CsPbI2Br Perovskite Solar Cells with Improved Photostability. Advanced Materials31, 191152.
    ? Hot paper; Highly cited paper
  7. Li, Zhenchao; Chen, Ziming; Yang, Yongchao; Xue, Qifan; Yip, Hin-Lap; Cao, Yong. (2019). Modulation of recombination zone position for quasi-two-dimensional blue perovskite light-emitting diodes with efficiency exceeding 5%. Nature Communications10, 1047.
    ? Hot paper; Highly cited paper
    ? Presenting blue perovskite LEDs with record-high efficiency by the time of publication
  8. Chen, Sun; Xia, Ruoxi; Shi, Hui; Yao, Huifeng; Liu, Xiang; Hou, Jianhui; Huang, Fei; Yip, Hin-Lap; Cao, Yong. (2018). Heat Insulating Multifunctional Semitransparent Polymer Solar Cells. Joules2, 1816.
    ? Cell Press "paper of the year 2018” for the Physical Science field (only 2 papers awarded)
    ? Media highlights: C&EN, New Scientist, Science Daily, Daily Mail, SPIEGEL, Eurek Alert(AAAS), Xinhua, etc.
  9. Li, Miaomiao; Gao, Ke; Wan, Xiangjian; Yip, Hin-Lap; Peng, Xiaobin; Cao, Yong; Chen Yongsheng, et al. (2017). Solution-Processed Organic Tandem Solar Cells with Power Conversion Efficiencies > 12%. Nature Photonics11, 85.
    ? Highly cited paper
  10. Yip, Hin-Lap; Jen, Alex K-Y. (2012). Recent Advances in Solution-Processed Interfacial Materials for Efficient and Stable Polymer Solar Cells. Energy Environment Science5, 5994.
    ? Highly cited paper
大发888问题缺少组件| 玩百家乐优博娱乐城| 博彩资讯网| rmb百家乐官网的玩法技巧和规则| 百家乐有人赢过吗| 大发888娱乐城 建账号| 百家乐官网庄闲排列| 澳门百家乐娱乐开户| 半圆百家乐官网桌子| 百家乐作弊| 百家乐官网六合彩| 百家乐闲庄和| 百家乐官网龙虎扑克牌游戏技巧打| 百家乐现实赌场| 宁波市| 威尼斯人娱乐城送钱| 百家乐官网平注常赢法| 百家乐桌折叠| 网站百家乐官网假| 百家乐官网免费路单| 百家乐赌场赌场网站| 百家乐官网牌桌订做| 全讯网网站| 娱乐城百家乐规则| 泰来百家乐官网导航| 大发888真人关键词| 做生意的十大风水禁忌| 来宾市| 百家乐赌博工具| 百家乐官网澳门技巧| 上蔡县| 佳豪国际娱乐| 威尼斯人娱乐城打造| 澳门百家乐要注意啥| 线上娱乐城| 大发888娱乐城都有啥扑克牌游戏| 亚洲百家乐新全讯网| 澳门赌场色情| 百家乐澳门色子| 百家乐官网美女视频聊天| 大发888扑克下载|