One‐dimensional carbon based nanoreactor fabrication by electrospinning for sustainable catalysis

Author:

He Fagui1,Wang Yiyan23,Liu Jian124,Yao Xiangdong5

Affiliation:

1. State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics Chinese Academy of Sciences Dalian Liaoning China

2. DICP‐Surrey Joint Centre for Future Materials, Department of Chemical and Process Engineering, and Advanced Technology Institute University of Surrey Guilford Surrey UK

3. State Key Laboratory of Green Chemical Engineering and Industrial Catalysis, Shanghai Research Institute of Petrochemical Technology Sinopec Shanghai China

4. Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials Fudan University Shanghai P. R. China

5. School of Advanced Energy Sun‐yat Sen University (Shenzhen) Shenzhen Guangdong China

Abstract

AbstractAn efficient and economical electrocatalyst as kinetic support is key to electrochemical reactions. For this reason, chemists have been working to investigate the basic changing of chemical principles when the system is confined in limited space with nanometer‐scale dimensions or sub‐microliter volumes. Inspired by biological research, the design and construction of a closed reaction environment, namely the reactor, has attracted more and more interest in chemistry, biology, and materials science. In particular, nanoreactors became a high‐profile rising star and different types of nanoreactors have been fabricated. Compared with the traditional particle nanoreactor, the one‐dimensional (1D) carbon‐based nanoreactor prepared by the electrospinning process has better electrolyte diffusion, charge transfer capabilities, and outstanding catalytic activity and selectivity than the traditional particle catalyst which has great application potential in various electrochemical catalytic reactions.

Funder

Science and Technology Commission of Shanghai Municipality

Publisher

Wiley

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