纳米片
材料科学
双功能
析氧
电极
锰
分解水
化学工程
单层
电导率
纳米技术
无机化学
电化学
冶金
有机化学
光催化
工程类
物理化学
催化作用
化学
作者
Yunxuan Zhao,Chao Chang,Fei Teng,Yufei Zhao,Guangbo Chen,Run Shi,Geoffrey I. N. Waterhouse,Weifeng Huang,Tierui Zhang
标识
DOI:10.1002/aenm.201700005
摘要
Recently, defect engineering has been used to intruduce half‐metallicity into selected semiconductors, thereby significantly enhancing their electrical conductivity and catalytic/electrocatalytic performance. Taking inspiration from this, we developed a novel bifunctional electrode consisting of two monolayer thick manganese dioxide (δ‐MnO 2 ) nanosheet arrays on a nickel foam, using a novel in‐situ method. The bifunctional electrode exposes numerous active sites for electrocatalytic rections and displays excellent electrical conductivity, resulting in strong performance for both HER and OER. Based on detailed structure analysis and density functional theory (DFT) calculations, the remarkably OER and HER activity of the bifunctional electrode can be attributed to the ultrathin δ‐MnO 2 nanosheets containing abundant oxygen vacancies lead to the formation od Mn 3+ active sites, which give rise to half‐metallicity properties and strong H 2 O adsorption. This synthetic strategy introduced here represents a new method for the development of non‐precious metal Mn‐based electrocatalysts for eddicient energy conversion.
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