榮譽獎勵(Honors and AWARDS) (1)2017年第32屆美國匹茲堡國際發明展金獎 (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屆瑞士日内瓦國際發明展金獎及特别獎 (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屆德國紐倫堡國際發明展金獎 (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年香港綠色建築議會環保建築大獎 (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年香港理工大學博士後獎學金 (11)2011: Postdoctoral Fellowship Award from The Hong Kong Polytechnic University 科研論文 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 |