| Literature DB >> 31802649 |
Chunlei Peng1,2,3, Nian Ran1,2,3, Gang Wan1, Wanpeng Zhao1,2,3, Zhaoyu Kuang1,2,3, Zheng Lu4, Chengjun Sun5, Jianjun Liu1, Lianzhou Wang6, Hangrong Chen1.
Abstract
Nickel-iron layered double hydroxide (NiFe LDH) is a promising oxygen evolution reaction (OER) electrocatalyst under alkaline conditions. Much research has been performed to understand the structure-activity relationship of NiFe LDH under OER conditions. However, the specific role of the Fe species remains unclear and under debate. Herein, based on DFT calculations, it was discovered that the edge Fe sites show higher activity towards OER than either the edge Ni sites or lattice sites. Therefore, a facile acid-etching method was proposed to controllably induce the formation of edge Fe sites in NiFe LDH, and the obtained sample exhibited higher OER activity. X-ray absorption near edge structure and extended X-ray absorption fine structure analyses further revealed that the interaction of the edge Fe species with Ni is believed to contribute to the enhancement of the OER performance. This work provides a new understanding of the structure-activity relationship in NiFe LDH and offers a facile method for the design of efficient electrocatalysts in an alkaline environment.Entities:
Keywords: electrocatalysis; layered double hydroxide; nanosheet; oxygen evolution reaction; water splitting
Year: 2020 PMID: 31802649 DOI: 10.1002/cssc.201902841
Source DB: PubMed Journal: ChemSusChem ISSN: 1864-5631 Impact factor: 8.928