Self-Assembly of Ir-Based Nanosheets with Ordered Interlayer Space for Enhanced Electrocatalytic Water Oxidation

析氧 化学 过电位 介孔材料 催化作用 价(化学) 层状结构 化学工程 电化学 纳米颗粒 纳米技术 电极 材料科学 物理化学 结晶学 有机化学 工程类
作者
Lianhai Zu,Xingyue Qian,Shenlong Zhao,Qinghua Liang,Yu Emily Chen,Min Liu,Bing‐Jian Su,Kuang‐Hsu Wu,Longbing Qu,Linlin Duan,Hualin Zhan,Junye Zhang,Can Li,Wei Li,Jenh‐Yih Juang,Junwu Zhu,Dan Li,Aibing Yu,Dongyuan Zhao
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:144 (5): 2208-2217 被引量:204
标识
DOI:10.1021/jacs.1c11241
摘要

Iridium (Ir)-based electrocatalysts are widely explored as benchmarks for acidic oxygen evolution reactions (OERs). However, further enhancing their catalytic activity remains challenging due to the difficulty in identifying active species and unfavorable architectures. In this work, we synthesized ultrathin Ir-IrOx/C nanosheets with ordered interlayer space for enhanced OER by a nanoconfined self-assembly strategy, employing block copolymer formed stable end-merged lamellar micelles. The interlayer distance of the prepared Ir-IrOx/C nanosheets was well controlled at ∼20 nm and Ir-IrOx nanoparticles (∼2 nm) were uniformly distributed within the nanosheets. Importantly, the fabricated Ir-IrOx/C electrocatalysts display one of the lowest overpotential (η) of 198 mV at 10 mA cm-2geo during OER in an acid medium, benefiting from their features of mixed-valence states, rich electrophilic oxygen species (O(II-δ)-), and favorable mesostructured architectures. Both experimental and computational results reveal that the mixed valence and O(II-δ)- moieties of the 2D mesoporous Ir-IrOx/C catalysts with a shortened Ir-O(II-δ)- bond (1.91 Å) is the key active species for the enhancement of OER by balancing the adsorption free energy of oxygen-containing intermediates. This strategy thus opens an avenue for designing high performance 2D ordered mesoporous electrocatalysts through a nanoconfined self-assembly strategy for water oxidation and beyond.
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