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毛俊杰

作者:     发布时间: 2020-05-21 点击数:

 

教授(shou)、博士生导师

邮箱: maochem@126.com

电话: 0553-5910557

 

2016年清华大学化学系获得博士学位;先后在北京化工大学、美国Case Western Reserve University从事博士后研究。

 

研(yan)究(jiu)方向: 无机新材(cai)料,单原(yuan)子催(cui)化(hua),电(dian)分析(xi)化(hua)学(xue)

 

招生信息: 每年招收(shou)博士、硕(shuo)士多名(无机化学(xue)专(zhuan)业);常年招收(shou)博士后(hou)(具有光电研(yan)究背景的优先),待(dai)遇从优,具体情况面议。

 

欢迎加盟!

 

近(jin)期论(lun)文

1. Synergistic modulation of the separation of photo-generated carries via engineering of dual atomic sites for promoting photocatalytic performance. Adv. Mater. 2021, 2105904.

2. Transforming cobalt hydroxide nanowires into single atom site catalysts. Nano Energy. 2021, 83, 105799.

3. N-bridged Co-N-Ni: new bimetallic sites for promoting electrochemical CO2 reduction, Energy Environ. Sci. 2021, 14, 3019.

4. Photoinduction of Cu Single Atoms Decorated on UiO-66-NH2 for Enhanced Photocatalytic Reduction of CO2 to Liquid Fuels. J. Am. Chem. Soc. 2020, 142,19339.

5. Isolated Ni atoms dispersed on Ru nanosheets: high performance electrocatalysts toward hydrogen oxidation reaction. Nano Lett. 2020, 20, 3442.

6. Single-Atom Ni-N4 Provides A Robust Cellular NO Sensor. Nat. Commun. 2020, 11, 3188.

7. Single atom alloy: an emerging atomic site material for catalytic applications. Nano Today. 2020, 34, 100917.

8. Structure regulation of noble-metal-based nanomaterials at an atomic level. Nano Today. 2019, 26, 164.

9. Accelerating Water Dissociation Kinetics by Isolating Cobalt Atoms into Ruthenium Lattice. Nat. Commun. 2018, 9, 4958.

         


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