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王勇 教授
电话:(+86)17833552512  邮箱


1983年3月生,河南省洛阳市人,理学博士,江苏省特聘教授。2012年7月毕业于新加坡南洋理工大学化学与生物化学系,获博士学位。2012年至2015年分别在美国圣母大学和新加坡南洋理工大学从事博士后研究。2015年至2019年在新加坡材料研究与工程研究所担任项目研究员。2019年至2020年在应用材料半导体企业担任项目负责人。近年来,主要从事功能纳米材料的设计合成,及其在能源存储中的应用,以及基于表面化学的半导体材料的选择性沉积等领域的研究工作。作为主要参与人参与多项科研项目。在国际知名期刊上发表论文30余篇,包括Nature Communications,Journal of the American Chemical Society,Chemical Society Review, ACS Nano等,总被引用超过2000次,H-Index为18。ESI高被引论文1篇。申请新加坡与美国专利数项。


1. 功能纳米材料合成;
2. 能源存储与转换;
3. 半导体材料;
4. 表面化学。


1. 江苏省特聘教授,主持
2. 新加坡National Research Foundation:Multivalent Energy Storage for a Sustainable Future: A Quest beyond Lithium-Ion Technologies,主要参与人
3. 美国DOE Nuclear Energy University Program:Microscopic Fuel Particles Produced by Self-Assembly of Actinide Nanoclusters,主要参与人

1. Solution Growth of Ultralong Gold Nano-Helices, Wang, Y.; He, J.; Mu, X.; Wang, D., Zhang, B.; Shen, Y.; Lin, M.; Kuebel, C.; Huang, Y.;Chen, H.* ACS Nano, 2017,  11, 5538-5546 (SCI, IF = 13.903);
2. Emerging Chirality in Nanoscience, Wang, Y.; Xu, J.; Wang, Y.; Chen, H.* Chemical Society Review, 2013, 42, 2930-2962 (SCI, IF = 40.443);
3. Chiral Transformation: from Single Nanowire to Double Helix, Wang, Y.; Wang, Q.; Sun, H.; Zhang, W.; Chen, G.; Wang, Y.; Shen, X.; Han, Y.; Lu, X.; Chen, H.* Journal of the American Chemical Society, 2011, 133, 20060-20063 (SCI, IF = 14.695);
4. A systems approach towards the stoichiometry-controlled hetero-assembly of nanoparticles, Wang, Y.; Chen, G.; Yang, M. X.; Silber, G.; Xing, S. X.; Tan, L. H.; Wang, F.; Feng, Y. H.; Liu, X. G.; Li, S. Z.; Chen, H. Y.* Nature Communications, 2010, 1, 87 (SCI, IF = 11.88)
5. Measuring Ensemble-Averaged Surface-Enhanced Raman Scattering in the Hotspots of Colloidal Nanoparticle Dimers and Trimers, Chen, G.; Wang, Y.; Yang, M.; Xu, J.; Goh, S.; Pan, M.; Chen, H.*, Journal of the American Chemical Society, 2010, 132, 3644-3645 (SCI, IF = 14.695);
6. High-Purity Separation of Gold Nanoparticle Dimers and Trimers, Chen, G.; Wang, Y.; Tan, L.; Yang, M.; Tan, L.; Chen, Y.; Chen, H.*, Journal of the American Chemical Society, 2009, 131, 4218-4219 (SCI, IF = 14.695);
7. Free-standing nitrogen-doped graphene-carbon nanofiber composite mats: electrospinning synthesis and application as anode material for lithium-ion batteries, Shan, C.#; Wang, Y.# (共同一作); Xie, S.; Guan, H.*; Argueta, M.; Yue, Y.* Journal of Chemical Technology & Biotechnology, 2019, 12, 3793-3799 (SCI, IF = 2.587);
8. Shape effect of nanoparticles on tumor penetration for monolayers versus spheroids, Zhang, L.#; Wang, Y.# (共同一作); Yang, D.; Huang, W.; Hao, P.; Feng, S.; Appelhans, D.; Zhang, T.; Zan, X.*Molecular Pharmaceutics, 2019, 7, 2902-2911 (SCI, IF = 4.396);
9. Building polyphenol and gelatin films as implant coating, evaluating from in vitro and in vivo performances, Yang, S.#; Wang, Y.# (共同一作); Luo, S.; Shan, C.; Geng, Y.; Zhang, T.; Sheng, S.; Zan, X.*, Colloids and Surfaces B: Biointerfaces, 2019, 181, 549-560 (SCI, IF = 3.997);
10. Multifunctional Tannic Acid (TA) and Lysozyme (Lys) Films Built Layer by Layer for Potential Application on Implant Coating, Yang, S.#; Wang, Y.# (共同一作); Wu, X.; Sheng, S.; Wang, T.; Zan, X.* ACS Biomater. Sci. Eng., 2019, 7, 3582-3594 (SCI, IF = 4.511);
11. A Biphasic Interphase Design Enabling High Performance in Room Temperature Sodium-Sulfur Batteries, Kumar, V.; Wang, Y.; Eng, A. Y. S.; Ng, M.-F.; Seh, Z. W.*, Cell Rep. Phys. Sci. 2020, 1, 100044;
12. An Artificial Metal-Alloy Interphase for High-Rate and Long-Life Sodium–Sulfur Batteries, Kumar, V.; Eng, A. Y. S.; Wang, Y.; Nguyen, D.-T.; Ng, M.-F.; Seh, Z. W.* Energy Storage Mater. 2020, 29, 1-8 (SCI, IF = 16.28).


1. A Method to Synthesize Microporous Carbon-Sulfur Composite Cathode for Room-Temperature Sodium-Sulfur Battery 新加坡 专利,10201911398V


2020 江苏省特聘教授



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