代表性成果
1. X. Li, G. Liu*, D. Xu, X. Hong* and E. Tsang, Confinement of subnanometric PdZn at defect enriched ZnO/ZIF-8 interface for efficient and selective CO2 hydrogenation to methanol. J. Mater. Chem. A, 2019, DOI: 10.1039/C9TA03410B
2. Yazhi Yin, Bing Hu, Xinliang Li, Xiaohai Zhou*, Xinlin Hong*, and Guoliang Liu*, Pd@zeolitic imidazolate framework-8 derived PdZn alloy catalysts for efficient hydrogenation of CO2 to methanol. App. Catal. B: Enviornmental, 2018, 234, 143-152.
3.Bing Hu; Yazhi Yin; Guoliang Liu*; Shengli Chen; Xinlin hong*, Shik Chi Tsang, Hydrogen spillover enabled active Cu sites for methanol synthesis from CO2 hydrogenation over Pd doped CuZn catalysts, Journal of Catalysis 2018, 359, 17-26.
4.Xinliang Li; Ziyan Zeng; Bing Hu; Lihua Qian; Xinlin Hong*, Surface Atoms Dependence of ZnO Supported Ag@Pd Core@Shell Nanocatalysts in CO2 Hydrogenation to CH3OH, ChemCatChem 2017, 9, 924-926.
5.Kaixi Deng, Bing Hu, Qingye Lu*, Xinlin Hong*, Cu/g-C3N4 modified ZnO/Al2O3 catalyst: methanol yield improvement of CO2 hydrogenation, Catalysis Communications 2017, 100, 81-84.
6. Yu, Y., Yang, Q., Yu, X., Lu, Q.*, undefinedamp; Hong, X.*. Highly efficient metal-free visible light driven photocatalyst: graphene oxide/polythiophene composite. Chemistryselect 2017, 2(20), 5578-5586.
7. Xinliang Li, Xinlin Hong*, PdPt@Au Core@Shell Nanoparticles: Alloyed-core Manipulation of CO Electrocatalytic Oxidation Properties, Catalysis Communications 2016, 83(5), 70-73
8. Yue Yu, Jiancheng Jin, Xi Yu, Xiaoheng Xiao, Xinlin Hong*, Morphology Effect of Polythiophene Catalysts on Photo-degradation of Methylene Blue, RSC Adv., 2016, 6, 74968-74972.
9. Junwei Ge, Ziyan Zeng, Fenglin Liao, Weiran Zheng, Xinlin Hong*, and Shik Chi Tsang*, Pd on Iron Oxide Nanoparticles: Morphological Effect of Support in Glycerol Hydrogenolysis, Green Chemistry, 2013, 15, 2064-2069.
10.Fenglin Liao, Ziyan Zeng, Clive Eley, Qin Lu, Xinlin Hong* and Shik Chi Tsang*, Electronic modulation of Cu-ZnO catalyst by heterojunction establishment for selective hydrogenation of CO2 to CH3OH, Angew. Chem. Inter. Ed. 2012, 51, 5832-5836.
11.Fenglin Liao, Yaqun Huang, Junwei Ge, Weiran Zheng, Karaked Tedsree, Paul Collier, Xinlin Hong* and Shik Chi Tsang*, Morphology Dependent Interactions of ZnO with Cu Nanoparticles at Materials Interface In Selective Hydrogenation of CO2 to CH3OH, Angew. Chem. Inter. Ed. 2011, 50, 2162-2165.
12.Yaqun Huang, Fenglin Liao, Weiran Zheng, Xiulan Liu, Xiaojun Wu, Xinlin Hong* and Shik Chi Tsang*, Temperature and Solvent-Dependent Morphological Sol Gel Transformation: An in Situ microscopic observation, Langmuir, 2010, 26, 3106-3114.
13.Yaqun Huang, Yi Lin, Guangpeng Zeng, Zhixiu Liang, Xiulan Liu, Xinlin Hong*, Gaoyong Zhang, Shik Chi Tsang*, Thermoreversible organogels formed in a polyol system for the preparation of Sn nanoparticles encapsulated in carbon, Journal of Material Chemistry 2008, 18, 5445-5447.
获奖与荣誉
中国洗涤用品工业协会专家委员会委员、东风商用车公司工艺研究所客座研究员、第七届武汉“光谷3551人才计划”(2014)、第六届中国产学研合作创新奖(2012年)、武汉大学蓝月亮优秀研究生导师奖学金(2012年、2010年)、广东省教育部科技部优秀企业科技特派员(2010年)
绿色合成与多相催化实验室简介:
本实验室致力于与环境和能源密切相关的绿色合成技术和多相催化表界面基础研究,并注重与企业的产学研合作和技术成果转化。近年来在生物质燃油定向合成、CO2加氢制甲醇催化剂的表界面相互作用与新型高效催化剂设计、绿色合成催化剂的应用与开发等方面取得了良好的进展。与牛津大学化学系Wolfson催化研究中心建立了紧密国际合作关系,并依托本实验室工业催化基础,开展产学研合作,致力于将绿色化学思想引入工业化学品生产中并进一步解决环境污染问题。
本实验室主要成员如下:
曾适之(Shik Chi Edman Tsang),牛津大学化学系教授,Wolfson催化研究中心主任,武汉大学教育部讲座教授,长期致力于能源与环境相关的多相催化研究,已在Nature,Science,Nature Nanotech,JACS等国际顶级学术期刊发表论文200余篇,被引用超过5800次,ChemCatChem, Catalysis Today编委,2012年荣获RSC Green Chemistry Award。Email:edman.tsang@chem.ox.ac.uk
洪昕林,武汉大学化学与分子科学学院教授,博士生导师,主要致力于面向环境和能源可持续发展的催化体系研究,目前研究兴趣主要集中在精细化学品合成中的均相催化多相化、绿色合成工艺开发以及化工三废的循环回收利用等方面。在Angew. Chem. Int. Ed., J. Catal., Green Chem., J. Mater. Chem., ChemCatChem等学术刊物上发表论文30余篇,2012年获第六届中国产学研合作创新奖,2014年获武汉东湖高新区“3551光谷人才计划”(第七批)。Email:hongxl@whu.edu.cn
刘国亮,武汉大学化学与分子科学学院特聘副研究员,主要致力于生物质转化和碳一化学中催化剂的表界面基础研究,重点开发新型纳米催化剂以及探究模型界面上的催化反应过程,已在Nature Chemistry, Journal of Catalysis, Applied Catalysis B, Green Chemistry等学术期刊上发表论文10余篇。Email:liugl@whu.edu.cn