化学
过电位
质子
催化作用
氧化还原
法拉第效率
电子转移
小提琴手
电化学
组合化学
部分
光化学
电致变色
质子耦合电子转移
电致变色装置
Knoevenagel冷凝
恒温器
纳米技术
电催化剂
析氧
质子输运
还原消去
分子开关
作者
Liang Xu,Jianyue He,Yi Qiao,Zehua Wu,Yawen Li,Guoping Li,Feng Liu,Xin Bo,Yu Fang,Gang He
摘要
Antimony (Sb)-based materials show great promise for hydrogen evolution reaction (HER) catalysis owing to their unique electronic structures and efficient proton-electron transfer capabilities. However, despite their potential, the molecular-level development of Sb-based catalysts has been hindered by significant synthetic challenges, particularly the difficulty in constructing well-defined molecular architectures, such as Sb-porphyrins or clusters. Herein, we report a new synthetic strategy to access two novel stiboviologens-decorated Sb4O6 clusters (SbVO-Me and SbVO-Ph) via directed oxidative coupling of stiboviologens. SbVO-Me and SbVO-Ph exhibit excellent redox activity, multielectron transfer capacity, and robust electrochromic behavior. DFT calculations and electrostatic potential mapping analyses reveal a cooperative electron-proton management mechanism: the viologen moiety acts as an "electron sponge," mediating charge accumulation and delivery, while the tetraantimony hexaoxide (Sb4O6) core serves as a "proton engine" to accelerate proton transport. In homogeneous acidic HER catalysis, the system achieves an overpotential of 535 mV with a Faradaic efficiency of 74.5%. Upon immobilization, the heterogeneous system delivers enhanced activity with a reduced overpotential of 182 mV. Mechanistic investigations support a cooperative catalytic pathway involving the viologens and Sb centers. This study introduces stiboviologens as a new class of main-group molecular catalysts, expanding the design landscape for viologen-based redox systems and offering new opportunities in proton-coupled electrocatalysis.
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