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Fabing Su


(Doctor, Professor, Group head)
Group of Catalysis and Porous Materials for Energy, State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, China 100190
Tel: 86-010-82544850; Fax: 86-010-82544851; Email: [email protected]
Group Web: http://cpme.mpcs.cn/
Research Interests
Heterogeneous catalysis in methanation and Rochow reaction, Nanostructured materials for  Li-ion batteries
Education
08/2002-10/2005: PhD, Department of Chemical and Biomolecular Engineering, NUS, Singapore
08/1991-07/1994: Master of Engineering, Research Institute of Chemical Defense (RICD), Beijing, China
09/1986-07/1991: Bachelor of Engineering, Department of Chemical Engineering, Tsinghua University, China
Work Experience
10/2009 – present: Full professor, Institute of Process Engineering, Chinese Academy of Sciences
02/2008 – 09/2009: Research Fellow, Institute of Chemical and Engineering Sciences (ICES), Singapore
10/2006 – 02/2008: Research associate, Department of Chemistry, The University of Liverpool, UK
11/2005 – 10/2006: Research fellow, Department of Chemical and Biomolecular Engineering, NUS, Singapore
09/1994 – 07/2002: Research assistant, Research Institute of Chemical Defense (RICD), Beijing, China
Contributions
170 papers published in international refereed journals
> 8800 paper citations, 45 H-index
10 international patent applications and 60 Chinese patent applications
Affiliations
Membership---American Chemical Society
Membership---Royal Society of Chemistry
Membership---Singapore Catalysis Society
Selected papers
(1) Yu Zhang, Yong Xu, Yongjun Ji,* Xi Wang,* Jing Li, Hezhi Liu, Dingsheng Wang, Ziyi Zhong, Yoshio Bando, Fabing Su.* Constructing radially oriented macroporous spheres with central cavities as ultrastable lithium-ion battery anodes. Energy Storage Materials 2019, 17: 242-252.
(2) Jing Li, Li-Li Yin, Yongjun Ji,* Hezhi Liu, Yu Zhang, Xue-Qing Gong,* Ziyi Zhong and Fabing Su.* Impact of the Cu2O crystal planes on the catalytic selectivity in Rochow reaction and understanding the reaction mechanism. Journal of Catalysis 2018, 361:73-83.
(4) Yu Zhang, Jing Li, Hezhi Liu, Yongjun Ji,* Ziyi Zhong, and Fabing Su.* Hierarchical zinc-copper oxides hollow microspheres as efficient Rochow reaction catalysts: the formation of effective charge transfer interfaces. Journal of Catalysis 2017, 348:233-245.
(5) Yu Zhang, Jing Li, Hezhi Liu, Yongjun Ji,* Ziyi Zhong, and Fabing Su.* Promoting effect of In2O3 on CuO for the Rochow reaction: the formation of P-N junctions at the hetero-interfaces. Journal of Catalysis 2017, 348:110-124.
(6) Qing Liu, Ziyi Zhong,* Xiaopeng Lu, Fangna Gu, Huifang Li, Guangwen Xu, and Fabing Su*. CO Methanation on ordered mesoporous Ni–Cr–Al Catalysts: effects of the catalyst structure and Cr promoter on the catalytic properties. Journal of Catalysis 2016, 337:221-232.
(7) Shanying Zou, Yongjun Ji,* Jing Li, Yu Zhang, Zheying Jin, Lihua Jia, Xiangfeng Guo,* Ziyi Zhong, and Fabing Su.* Novel leaf-like Cu-O-Sn nanosheets as highly efficient catalysts for the Rochow Reaction. Journal of Catalysis 2016, 337: 1-13.
(8) Zailei Zhang, Yanhong Wang, Wenfeng Ren, Qiangqiang Tan, Yunfa Chen, Hong Li, Ziyi Zhong, and Fabing Su.* Scalable synthesis of interconnected porous Silicon/Carbon composites by the Rochow reaction as high-performance anodes of Lithium ion batteries. Angewandte Chemie International Edition 2014, 53:5165-5169.
(9) Fabing Su, Christopher  L. Bray, Benjamin Carter, Gillian Overend, Catherine Cropper, Jonathan A. Iggo, Yaroslav Z. Khimyak, Andrew M. Fogg, Andrew I. Cooper. Reversible hydrogen storage in hydrogel clathrate hydrates. Advanced Materials 2009, 21: 2382-2386.
(10) Fabing Su*, Lu Lv, Fang Yin Lee, Tao Liu, Andrew I. Cooper, Xiu Song Zhao.* Thermally reduced Ru nanoparticles as a highly active heterogeneous catalyst for hydrogenation of monoaromatics. Journal of the American Chemical Society 2007, 129: 14213-14223.

 

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