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文燎勇博士
Liaoyong Wen, Ph.D.
多功能纳米结构器件实验室
文燎勇博士
Liaoyong Wen, Ph.D.
多功能纳米结构器件实验室
“在微小世界仍有许多空间_Richard Feynman。愿同西湖大学一起在微小世界里无畏前行, 共创辉煌!”
个人简介
文燎勇,1985年生,重庆黔江人。2006年获郑州大学学士学位;2009年获上海大学硕士学位。2009年-2010年工作于中国科学院苏州纳米技术与纳米仿生研究所。2011年-2016年先后就读于德国明斯特大学和伊尔姆瑙工业大学应用物理专业,获博士学位;并获得2015年度中国国家优秀自费留学生奖学金。2016年-2019年先后以资深研究员和博士后研究员工作于德国伊尔姆瑙工业大学和美国康涅狄格大学;并获得2018年康涅狄格大学PostDoc Seed Grant Funding Award和CMOC(IEEE CT)最佳口头报告奖。于2019年作为特聘研究员(PI/博导)加入西湖大学工学院,开展新型多元纳米结构材料及其多功能器件研究工作。
学术成果
高度有序的微纳米结构材料因其具有独特的物理化学性能,被广泛地应用于微电子器件、太阳能转换、能源储存、仿生器件等多个领域。文燎勇博士近年来主要利用先进微纳掩模板技术,设计并实现了大面积有序特殊纳米阵列、异质结和多元纳米超结构材料的精确构建及其器件应用。主要研究成果包括:1)基于独创的多元孔氧化铝掩模板技术构筑了可编辑多元纳米超结构,并将其应用于表面等离子体和高密度晶体管器件。2)通过掩模板与多种加工技术的有效结合,设计和制备了从零维到三维的多种异质结构,并研究其在光电转换和能源储存等方面的应用。3)开展了超长氧化锌纳米阵列和其他特殊纳米结构的可控制备及其压电性质研究。
课题组现阶段主要研究内容包括(不局限于):利用不同纳米单元协同耦合特性,开展多元纳米超结构材料可控制备,探索其物理化学新性质,并应用于1)二氧化碳还原、2)高密度能源/电子器件、3)体感/可植入传感器、4)模拟干/癌细胞生长微环境。
代表论文
1. Dang, Y.L; Wu, T.L; Tan, H.Y; Wang J.L; Cui, C.; Kerns, P.; Zhao, W.; Posada, L.; Wen, L.Y.*; Suib, S*. Partially reduced Ru/RuO2 composites as efficient and pH-universal electrocatalysts for hydrogen evolution. Energy & Environmental Science, 2021, DOI: 10.1039/D1EE02380B.
2. Zhu, M.; Li, L.; Zhang, Y.; Wu, K.; Yu, F.; Huang, Z.; Wang, G.; Li, J.; Wen, L.Y.*.; Liu, H.-K.; Dou, S.-X.; Yu, Y.; Wu, C.*, An in-situ formed stable interface layer for high-performance sodium metal anode in a non-flammable electrolyte. Energy Storage Mater. 2021, 42, 145-153.
3. Xu R.+, Wen L.Y.+, Wang Z., Zhao H., Mu G., Zeng Z., Zhou M., Bohm S., Zhang H., Wu Y., Runge E., Lei Y.*, Programmable Multiple Plasmonic Resonances of Nanoparticle Superlattice for Enhancing Photoelectrochemical Activity, Advanced Functional Materials, 2020, 2005170. (+contributed equally)
4. Cui C., Hu X.S., Wen L.Y.*, Recent progress on nanostructured bimetallic electrocatalysts for water splitting and electroreduction of carbon dioxide, Journal of Semiconductors, 2020, 41, 091705.
5. Wen L.Y.+, Xu R.+, Cui C., Tang W.X., Mi Y., Lu X.X., Zeng Z.Q., Suib S.S, Gao P.X.*, Lei Y.*, Template-Guided Programmable Janus Heteronanostructure Arrays for Efficient Plasmonic Photocatalysis, Nano Letters, 18, 4914–4921, 2018 (+contributed equally).
6. Wen L.Y., Xu R., Yan M., Lei Y.*, Multiple nanostructures based on anodized aluminum oxide templates, Nature Nanotechnology, 12, 244–250, 2017.
7. Xu R. +, Wen L.Y. +, Wang Z.J., Zhao H.P., Xu S.P., Mi Y., Xu Y., Sommerfeld M., Fang Y.G., Lei Y.*, Three-dimensional plasmonic nanostructure design for boosting photoelectrochemical activity, ACS Nano, 11, 7382-7389, 2017 (+contributed equally).
8. Yan M.+, Wen L.Y.+, Xu R., Wang Z.J., Cao D.W., Fang Y.G., Lei Y.*, Constructing AZO/TiO2 core/shell nanocone array with uniformly dispersed Au NPs for enhancing photoelectrochemical water splitting, Advanced Energy Material, 6, 1501496, 2016 (+contributed equally)
9. Wen L.Y.+, Zhou M.+, Wang. C.L.+, Mi Y., Lei Y.*, Nanoengineering energy conversion and storage devices via atomic layer deposition, Advanced Energy Materials, 6, 1600468, 2016 (+contributed equally)
10. Mi Y.+, Wen L.Y.+, Wang Z.J., Cao D.W., Xu R., Fang Y.G., Zhou Y.L., Lei Y.*, Fe(III) modified BiOCl ultrathin nanosheet towards high-efficient visible-light photocatalyst, Nano Energy, 30, 109, 2016 (+contributed equally)
11. Wang Z.J., Cao D.W., Wen L.Y., Xu R., Obergfell M., Mi Y., Zhan Z.B., Nasori, Demsar. J, Lei Y.*, Manipulation of charge transfer and transport in plasmonic-ferroelectric hybrids for photoelectrochemical applications, Nature Communication, 7, 10348, 2016.
12. Wen L.Y., Wang Z.J., Yan M., Xu R., Yu S.H.*, Lei Y.*, Designing heterogeneous one-dimensional nanostructure arrays based on AAO template for energy applications, Small, 11, 3408, 2015
13. Liang L.Y., Xu Y., Wang C.L., Wen L.Y., Fang Y.G., Mi Y., Zhou M., Zhao H.P., Lei Y.*, Large-scale Highly Ordered Sb Nanorod Arrays Anode with High Capacity and Rate Capability for Sodium-Ion Batteries, Energy & Environmental Science, 8, 2954, 2015
14. Wen L.Y., Mi Y., Wang C.L., Fang Y.G., Grote F., Zhao H.P., Zhou M., Lei Y.*, Cost-effective atomic layer deposition synthesis of Pt nanotube arrays: application for high performance supercapacitor, Small, 10, 3162, 2014.
15. Cao D.W., Wang Z.J., Nasori, Wen L.Y., Mi Y., Lei Y.*, Switchable Charge-Transfer in the Photoelectrochemical Energy-Conversion Process of Ferroelectric BiFeO3 Photoelectrodes, Angewandte Chemie International Edition, 126, 11207, 2014.
16. Wen L.Y., Wong K.M., Fang Y.G., Wu M.H., Lei Y.*, Fabrication and characterization of well-aligned, high density ZnO nanowire arrays and their realizations in Schottky device applications using a two-step approach, Journal of Materials Chemistry, 21, 7090, 2011.
17. Wen L.Y., Shao Z.Z., Fang Y.G., Wong K.M., Lei Y.*, Bian L.F.*, Wilde G., Selective growth and piezoelectric propriety of vertical ZnO nanowires on the ultra-thin alumina membranes, Applied Physics Letters, 97, 053106, 2010.
联系方式
电子邮箱:wenliaoyong@westlake.edu.cn
课题组长期招收博士研究生,欢迎材料学、微电子学、传感技术等相关方向的硕士或本科生提前联系或到实验室担任科研助理。
课题组现提供助理研究员,博士后和科研助理等多个职位,欢迎有相关研究经历和兴趣的同学咨询加盟。