Template-Assisted Synthesis of Accordion-Like CoFe(OH)X Nanosheet Clusters on GO Sheets for Electrocatalytic Water Oxidation

21 Pages Posted: 10 Aug 2021

See all articles by Jia Cheng

Jia Cheng

Jiangsu University

Xiaoyang Yue

University of Electronic Science and Technology of China (UESTC)

Caixia Chen

Jiangsu University

Xiaoping Shen

Jiangsu University

Shiping Zeng

Jiangsu University

Zhenyuan Ji

Jiangsu University

Aihua Yuan

Jiangsu University of Science and Technology

Guoxing Zhu

Jiangsu University

Date Written: 2021

Abstract

Developing highly efficient, low-cost and stable electrocatalysts for oxygen evolution reaction (OER) is momentous to achieve the conversion and storage of sustainable energy. Herein, the CoFe(OH) x / GO composites with accordion-like CoFe(OH) x nanosheets clusters dispersed on graphene oxide (GO) sheets are prepared via a template-assisted route. It is found that the OER performance of the CoFe(OH) x / GO composites strongly depends on the content of GO and the mole ratio of Co/Fe. The optimized CoFe(OH) x / GO composites exhibit remarkably enhanced OER electrocatalytic activity in 1 M KOH with a low overpotential of 294 mV at 10 mA cm -2 and a small Tafel slope of 63.4 mV dec -1 , which are far superior to the corresponding Co(OH) 2 / GO and bare CoFe(OH) x . The enhanced electrocatalytic activity can be ascribed to the regulated electronic structure surrounding the active metal sites by introducing Fe, the improved conductivity by GO for faster charge transfer, and the accordion-like hierarchical structure with increased accessible active sites. This work demonstrates a comprehensive strategy to improve the electrocatalytic performance of transition metal hydroxide based OER catalysts.

Suggested Citation

Cheng, Jia and Yue, Xiaoyang and Chen, Caixia and Shen, Xiaoping and Zeng, Shiping and Ji, Zhenyuan and Yuan, Aihua and Zhu, Guoxing, Template-Assisted Synthesis of Accordion-Like CoFe(OH)X Nanosheet Clusters on GO Sheets for Electrocatalytic Water Oxidation (2021). Available at SSRN: https://ssrn.com/abstract=3902687 or http://dx.doi.org/10.2139/ssrn.3902687

Jia Cheng

Jiangsu University

Xuefu Rd. 301
Xhenjiang, Jiangsu Province 212013
China

Xiaoyang Yue

University of Electronic Science and Technology of China (UESTC) ( email )

No.4, Section 2, North Jianshe Road
Chengdu, Chengdu 610054
China

Caixia Chen

Jiangsu University

Xuefu Rd. 301
Xhenjiang, 212013
China

Xiaoping Shen (Contact Author)

Jiangsu University

Shiping Zeng

Jiangsu University

Xuefu Rd. 301
Xhenjiang, 212013
China

Zhenyuan Ji

Jiangsu University

Xuefu Rd. 301
Xhenjiang, 212013
China

Aihua Yuan

Jiangsu University of Science and Technology

China

Guoxing Zhu

Jiangsu University

Xuefu Rd. 301
Xhenjiang, 212013
China

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