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华东理工大学化工学院导师教师师资介绍简介-朱明辉

本站小编 Free考研考试/2021-01-16



姓名:朱明辉
职称:****,博士生导师
电话:**
电子邮件:minghuizhu@ecust.edu.cn
教育背景:
2011.8-2016.12 美国理海大学化学工程博士(导师:Prof. Israel E. Wachs)
2007.8-2011.6 浙江大学化学工程与工艺学士
工作经历:
2018.9-至今 华东理工大学化工学院特聘研究员、****
2017.5-2018.8 美国麻省理工学院化工学院博士后研究员
2017.1-2017.4 美国理海大学化学工程与生物工程系研究助理
学术任职:
担任SCI期刊Catalysts、Front. Chem.和Adv. Mater. Sci. Eng.客座编辑
科研项目:
国家自然科学基金面上项目
上海市高峰高原学科建设人才专项
上海市青年科技英才扬帆计划
教育部基本科研业务费
研究方向:
围绕苛刻条件下催化剂动态构-效关系和反应-传递动力学调控机制等关键科学问题,发展动态现场原位(operando)谱学辅助的工业催化剂理性设计新方法。具体包括:
1.催化反应工程
2. 碳一化工
3.多相催化剂动态原位表征
代表性论文:
近五年,发表SCI论文共40余篇,其中以第一或通讯作者在J. Am. Chem. Soc.、Angew. Chem. Int. Ed.、AICHE J.、ACS Catal.、Appl. Catal. B Environ.和ACS Energy Lett.等国际知名期刊上发表论文20余篇。
(1)Zhu, M.; Tian, P.; Kurtz, R.; Lunkenbein, T.; Xu, J.; Schl?gl, R.; Wachs, I. E.; Han, Y.-F. Strong Metal-Support Interactions between Copper and Iron Oxide during the High-Temperature Water-Gas Shift Reaction.Angew. Chem. Int. Ed.2019,58, 9083–9087. (VIP paper, IF: 12.257)
(2)Zhu, M.; Chen, J.; Huang, L.; Ye, R.; Xu, J.; Han, Y.-F. Covalently Grafting Cobalt Porphyrin onto Carbon Nanotubes for Efficient CO2 Electroreduction.Angew. Chem. Int. Ed.2019,58, 6595–6599. (IF: 12.257)
(3)Zhu, M.; Lai, J.-K.; Tumuluri, U.; Wu, Z.; Wachs, I. E. Nature of Active Sites and Surface Intermediates during SCR of NO with NH3 by Supported V2O5–WO3/TiO2 Catalysts.J. Am. Chem. Soc.2017,139, 15624–15627. (IF: 14.695)
(4)Zhu, M.; Ye, R.; Jin, K.; Lazouski, N.; Manthiram, K. Elucidating the Reactivity and Mechanism of CO2 Electroreduction at Highly Dispersed Cobalt Phthalocyanine.ACS Energy Lett.2018,3, 1381–1386. (IF: 16.331)
(5)Zhu, M.; Chen, J.; Guo, R.; Xu, J.; Fang, X.; Han, Y.-F. Cobalt Phthalocyanine Coordinated to Pyridine-Functionalized Carbon Nanotubes with Enhanced CO2 Electroreduction.Appl. Catal. B Environ.2019,251, 112–118. (IF: 14.229)
(6)Zhu, M.; Lai, J.-K.; Tumuluri, U.; Ford, M. E.; Wu, Z.; Wachs, I. E. Reaction Pathways and Kinetics for Selective Catalytic Reduction (SCR) of Acidic NOx Emissions from Power Plants with NH3.ACS Catal.2017,7, 8358–8361. (IF: 12.221)
(7)Zhu, M.; Wachs, I. E. Iron-Based Catalysts for the High-Temperature Water–Gas Shift (HT-WGS) Reaction: A Review.ACS Catal.2016,6, 722–732. (IF: 12.221)
(8)Zhu, M.; Rocha, T. C. R.; Lunkenbein, T.; Knop-Gericke, A.; Schl?gl, R.; Wachs, I. E. Promotion Mechanisms of Iron Oxide-Based High Temperature Water–Gas Shift Catalysts by Chromium and Copper.ACS Catal.2016,6, 4455–4464. (IF: 12.221)
(9)Zhu, M.; Wachs, I. E. Determining Number of Active Sites and TOF for the High-Temperature Water Gas Shift Reaction by Iron Oxide-Based Catalysts.ACS Catal.2016,6, 1764–1767. (IF: 12.221)
(10)Zhu, M.; Wachs, I. E. Resolving the Reaction Mechanism for H2 Formation from High-Temperature Water–Gas Shift by Chromium-Iron Oxide Catalysts.ACS Catal.2016,6, 2827–2830. (IF: 12.221)








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