化学
锰
尖晶石
催化作用
晶体结构
星团(航天器)
氧化物
铱
结晶学
无机化学
光化学
有机化学
计算机科学
生物
古生物学
程序设计语言
作者
Sunghak Park,Tae Hwan Jang,Seungwoo Choi,Yoon Ho Lee,Kang Hee Cho,Moo Young Lee,Hongmin Seo,Hyung‐Kyu Lim,Yujeong Kim,Jinseok Ryu,Sang Won Im,Min Kim,Ji‐Sang Park,Miyoung Kim,Kyoungsuk Jin,Sun Hee Kim,Gyeong‐Su Park,Hyungjun Kim,Ki Tae Nam
摘要
The water oxidation reaction, the most important reaction for hydrogen production and other sustainable chemistry, is efficiently catalyzed by the Mn4CaO5 cluster in biological photosystem II. However, synthetic Mn-based heterogeneous electrocatalysts exhibit inferior catalytic activity at neutral pH under mild conditions. Symmetry-broken Mn atoms and their cooperative mechanism through efficient oxidative charge accumulation in biological clusters are important lessons but synthesis strategies for heterogeneous electrocatalysts have not been successfully developed. Here, we report a crystallographically distorted Mn-oxide nanocatalyst, in which Ir atoms break the space group symmetry from I41/amd to P1. Tetrahedral Mn(II) in spinel is partially replaced by Ir, surprisingly resulting in an unprecedented crystal structure. We analyzed the distorted crystal structure of manganese oxide using TEM and investigated how the charge accumulation of Mn atoms is facilitated by the presence of a small amount of Ir.
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