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用于高效稳定析氧的过渡金属配位聚合物的电合成

Electrosynthesis of Transition Metal Coordinated Polymers for Active and Stable Oxygen Evolution.

作者信息

Wang Xiao, Liu Fangming, Qin Hongye, Li Jinhan, Chen Xijie, Liu Kuiming, Zhao Tete, Yang Wanling, Yu Meng, Fan Guilan, Cheng Fangyi

机构信息

Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), Engineering Research Center of High-efficiency Energy Storage (Ministry of Education), College of Chemistry, Nankai University, Tianjin, 300071, China.

Frontiers Science Center for New Organic Matter (Ministry of Education), Nankai University, Tianjin, 300071, China.

出版信息

Angew Chem Int Ed Engl. 2024 Sep 23;63(39):e202409628. doi: 10.1002/anie.202409628. Epub 2024 Aug 22.

Abstract

Transition metal coordination polymers (TM-CP) are promising inexpensive and flexible electrocatalysts for oxygen evolution reaction in water electrolysis, while their facile synthesis and controllable regulation remain challenging. Here we report an anodic oxidation-electrodeposition strategy for the growth of TM-CP (TM=Fe, Co, Ni, Cr, Mn; CP=polyaniline, polypyrrole) films on a variety of metal substrates that act as both catalyst supports and metal ion sources. An exemplified bimetallic NiFe-polypyrrole (NiFe-PPy) features superior mechanical stability in friction and exhibits high activity with long-term durability in alkaline seawater (over 2000 h) and anion exchange membrane electrolyzer devices at current density of 500 mA cm. Spectroscopic and microscopic analysis unravels the configurations with atomically distributed metal sites induced by d-π conjugation, which transforms into a mosaic structure with NiFe (oxy)hydroxides embedded in PPy matrix during oxygen evolution. The superior catalytic performance is ascribed to the anchoring effect of PPy that inhibits metal dissolution, the strong substrate-to-catalyst interaction that ensures good adhesion, and the Fe/Ni-N coordination that modulates the electronic structures to facilitate the deprotonation of *OOH intermediate. This work provides a general strategy and mechanistic insight into building robust inorganic/polymer composite electrodes for oxygen electrocatalysis.

摘要

过渡金属配位聚合物(TM-CP)是用于水电解中析氧反应的有前景的廉价且灵活的电催化剂,然而其简便合成和可控调控仍然具有挑战性。在此,我们报道了一种阳极氧化-电沉积策略,用于在多种金属基底上生长TM-CP(TM = 铁、钴、镍、铬、锰;CP = 聚苯胺、聚吡咯)薄膜,这些基底既作为催化剂载体又作为金属离子源。一个典型的双金属镍铁-聚吡咯(NiFe-PPy)在摩擦中具有优异的机械稳定性,并且在碱性海水中(超过2000小时)以及在500 mA cm的电流密度下的阴离子交换膜电解槽装置中表现出高活性和长期耐久性。光谱和显微镜分析揭示了由d-π共轭诱导的具有原子分布金属位点的构型,在析氧过程中该构型转变为嵌入聚吡咯基质中的镍铁(羟基)氧化物的镶嵌结构。优异的催化性能归因于聚吡咯的锚固作用抑制了金属溶解、强大的基底与催化剂相互作用确保了良好的附着力以及Fe/Ni-N配位调节电子结构以促进*OOH中间体的去质子化。这项工作为构建用于氧电催化的坚固无机/聚合物复合电极提供了一种通用策略和机理见解。

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