亚稳态
钼酸盐
材料科学
析氧
相(物质)
微尺度化学
三元运算
电化学
电解
氧化物
化学物理
八面体
金属
氧气
化学工程
电解水
无机化学
物理化学
结晶学
催化作用
纳米技术
作者
Si Hoon Jeong,Seung Hoon Lee,Nosang V. Myung,Kyu Hyoung Lee
标识
DOI:10.1007/s13391-026-00641-8
摘要
Abstract Piezochromic molybdates (XMoO 4 , X = Ni, Co, Cu) can reversibly modulate their color via pressure- or temperature-induced polymorphic phase transitions. Beyond chromic behavior, the structural flexibility of the molybdate sublattice, switching between [MoO 4 ] tetrahedral and [MoO 6 ] octahedral coordination, implies tunable charge-transfer characteristics that are highly relevant to electrochemical applications, particularly when these compounds are regarded as metastable materials with intrinsically active frameworks. Herein, we demonstrate that microscale XMoO 4 powders exhibit distinct oxygen evolution reaction (OER) activities governed by structural instability and electronic structure. Single-phase XMoO 4 micropowders show composition-dependent OER performance (151 mA cm -2 for NiMoO 4 , 218 mA cm -2 for CoMoO 4 , and 206 mA cm -2 for CuMoO 4 in 1 M KOH). Moreover, the electrochemical oxidation behavior of XMoO 4 during water electrolysis varies markedly with the structural phase described (α and β), particularly near an applied potential of ~ 1 V. These results highlight the catalytic potential of metastable ternary metal oxide powders without relying on noble or rare-earth elements and suggest that metastability can serve as an effective design parameter for advanced electrocatalysts. Graphical Abstract
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