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桂林理工大学土木与建筑工程学院导师教师师资介绍简介-汪远昊

本站小编 Free考研考试/2021-06-13



姓名
汪远昊

职称
特聘客座教授

联系方式


邮箱
@qq.com

通信地址
广西桂林市七星区建干路12号
桂林理工大学-土木与建筑工程学院

学习工作经历

学习经历
(1).2011.06-2013.08,香港理工大学建设与环境学院屋宇设备工程学系 博士后研究员 (Postdoctoral fellow)
(2).2010.02-2011.01, 北伊利诺伊大学访问**** (Visiting research scholar)
(3).2007.08-2011.05, 香港理工大学建设与环境学院屋宇设备工程学系 光伏专业 博士
(4).2003.08-2007.07, 清华大学化学系,化学专业学士学位
工作经历
(1).2019.03-至今, 桂林理工大学土木与建筑工程学院 特聘客座教授
(2).2016.06-至今, 中国科学院新疆理化所特聘研究员,博士生导师
(3)2015.06-2016.05香港高等教育科技学院 助理教授(Assistant professor)
(4).2013.09-2015.05香港理工大学建设与环境学院屋宇设备工程学系 高级研究员 (Senior research fellow)

主要研究方向

绿色建筑功能材料;环保材料;光伏发电;

主持(或参与)的主要科研项目

(1).激光选择性刻蚀制备金属微米柱阵列及其在钙钛矿太阳电池中的行为研究,国家自然基金青年科学基金项目,2018.01-2020.12
(2).文物激光烧蚀与激光诱导荧光检测,香港科技顾问项目,2017.03-2018.02
(3).绿色建筑核心技术与材料体系研发团队项目,深圳孔雀计划团队项目扶持资金,2015.10-2017.12
(4).真空玻璃光伏组件的开发及在香港楼宇的应用研究,香港建筑议会基金,2015.01-2016.12
(5).适用于天然石材的可湿板施工防护剂的开发及产业化,福建省****项目,2017.01-2018.12

取得的主要成果

荣誉奖励(Honors and AWARDS)
(1)2017年第32届美国匹兹堡国际发明展金奖
(2)2017: Golden Award in the 32rd International Invention Exhibition in Pittsburgh, 2017 for the product of “The Development of super-hydrophobic self-cleaning coatings based on waste marble powders”
(3)2016: Awarded by the 12nd Thousand Talent Plan
(4)2016年第44届瑞士日内瓦国际发明展金奖及特别奖
(5)2016: Golden Award and Special Award in the 44th edition of the International Exhibition of Inventions of Geneva 2016 for “the super-hydrophilic self-cleaning photovoltaic panels”
(6)2016年第68届德国纽伦堡国际发明展金奖
(7)2016: Golden Award in the 68th International Invention Exhibition in Nuremberg, 2016 for the product of “transparent heat insulated paint for curtain walls”
(8)2014年香港绿色建筑议会环保建筑大奖
(9)2014: Merit Award in the Green Building Award 2014 of Hong Kong for the product of “screen-printable self-cleaning coatings for windows”
(10)2011年香港理工大学博士后奖学金
(11)2011: Postdoctoral Fellowship Award from The Hong Kong Polytechnic University
科研论文
1. Co2SiO4/SiO2/RGO nanosheets: Boosting the lithium storage capability of tetravalent Si by using highly-dispersed Co element, Zhao Y, Zheng L, Wu H, Y Wang*, Electrochimica Acta, 2018.
2. Donor-Acceptor Supramolecular Organic Nanofibers as Visible-Light Photoelectrocatalysts for Hydrogen Production, Yang, L., Wang, M., Slattum, P. M., Bunes, B. R., Wang, Y. *, Wang, C., & Zang, L. ACS applied materials & interfaces, 2018.
3. Secondary crystal growth for efficient planar perovskite solar cells in ambient atmosphere, Zheng, L., Xiao, L., Wang, Y., & Yang, H. Organic Electronics 2018: 58, 119-125.
4. TiO2/antimony-doped tin oxide: Highly water-dispersed nano composites with excellent IR insulation and super-hydrophilic property, Hu Y, Zhong H, Wang Y*, et al. Solar Energy Materials and Solar Cells, 2018, 174: 499-508.
5. Ultrahigh Reversibility of SnO2 in SnO2@ C Quantum Dots/Graphene Oxide Nanosheets for Lithium Storage, Zhang, P., Wu, X., Zhao, Y., Wang, L., Su, L., Wang Y*, & Ren, M. ChemistrySelect, 2017 2, 11853-11859.
6. Layered nanostructured ferroelectric perovskite Bi5FeTi3O15 for visible light photodegradation of antibiotics, Hailili, R., Wang, Z. Q., Xu, M., Wang, Y., Gong, X. Q., Xu, T., & Wang, C. Journal of Materials Chemistry A, 2017 5, 21275-21290.
7. Oxygen vacancies induced visible-light photocatalytic activities of CaCu3Ti4O12 with controllable morphologies for antibiotic degradation, Hailili, R., Wang, Z. Q., Li, Y., Wang, Y., Sharma, V. K., Gong, X. Q., & Wang, C. (2018). Applied Catalysis B: Environmental, 221, 422-432.
8. Two-channel photocatalytic production of H2O2 over g-C3N4 nanosheets modified with perylene imides, Yang, L., Dong, G., Jacobs, D. L., Wang, Y., Zang, L., & Wang, C. (2017). Journal of Catalysis, 352, 274-281.
9. Electrochemical treatment of 2, 4–dichlorophenol using a nanostructured 3D–porous Ti/Sb–SnO2–Gr anode: Reaction kinetics, mechanism, and continuous operation, Asim, S., Zhu, Y., Batool, A., Hailili, R., Luo, J., Wang, Y., & Wang, C. (2017). Chemosphere, 185, 11-19.
10. Study on an internally-cooled liquid desiccant dehumidifier with CFD model, Y Luo, Y Chen, H Yang, Y Wang*, Applied Energy 2017: 194, 399-409




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