析氧
纳米片
钴
材料科学
沸石
催化作用
化学工程
电化学
电催化剂
贵金属
金属
咪唑
无机化学
纳米技术
化学
电极
有机化学
冶金
物理化学
工程类
作者
Kolleboyina Jayaramulu,Justus Masa,Dulce M. Morales,Ondřej Tomanec,Václav Ranc,Martin Petr,Patrick Wilde,Yen‐Ting Chen,Radek Zbořil,Wolfgang Schuhmann,Roland A. Fischer
标识
DOI:10.1002/advs.201801029
摘要
2D layered materials, including metal-di-chalcogenides and transition metal layered double hydroxides, among others, are intensively studied because of new properties that emerge from their 2D confinement, which are attractive for advanced applications. Herein, 2D cobalt ion (Co2+) and benzimidazole (bIm) based zeolite-imidazole framework nanosheets, ZIF-9(III), are reported as exceptionally efficient electrocatalysts for the oxygen evolution reaction (OER). Specifically, liquid-phase ultrasonication is applied to exfoliate a [Co4(bIm)16] zeolite-imidazole framework (ZIF), named as ZIF-9(III) phase, into nanoscale sheets. ZIF-9(III) is selectively prepared through simple mechanical grinding of cobalt nitrate and benzimidazole in the presence of a small amount of ethanol. The resultant exfoliated nanosheets exhibit significantly higher OER activity in alkaline conditions than the corresponding bulk phases ZIF-9 and ZIF-9(III). The electrochemical and physicochemical characterization data support the assignment of the OER activity of the exfoliated nanosheet derived material to nitrogen coordinated cobalt oxyhydroxide N4CoOOH sites, following a mechanism known for Co-porphyrin and related systems. Thus, exfoliated 2D nanosheets hold promise as potential alternatives to commercial noble metal electrocatalysts for the OER.
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