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用于双电子氧还原的有机凝胶聚合物电催化剂。

Organogel Polymer Electrocatalysts for Two-Electron Oxygen Reduction.

作者信息

Li Lili, Wang Binbin, Chen Hongni, Wu Han, Xing Yali, Xia Yanzhi, Long Xiaojing

机构信息

State Key Laboratory of Bio-fibers and Eco-textiles, Collaborative Innovation Center of Shandong Marine Biobased Fibers and Ecological Textiles, Institute of Marine Biobased Materials, College of Materials Science and Engineering, Qingdao University, Qingdao, 266071, P. R. China.

出版信息

Small. 2025 Feb;21(6):e2410371. doi: 10.1002/smll.202410371. Epub 2024 Dec 20.

Abstract

Polymer gels, renowned for unparalleled chemical stability and self-sustaining properties, have garnered significant attention in electrocatalysis. Notably, organic polymer gels that exhibit temperature sensitivity and incorporate suitable polar nonvolatile liquids, enhance electronic conductivity, and impart distinct morphological features, but remain largely unexplored as electrocatalysts for oxygen reduction reaction (ORR). To address this issue, an innovative strategy is proposed for synergistic modulation of the rigidity of mainchain molecular skeleton and length of alkyl sidechains, enabling the development of organogel polymers with a sol-gel temperature-sensitive phase transition that promises high selectivity and enhanced activity in electrocatalytic processes. Notably, the shortening of alkyl sidechain length can significantly affect the gelation behavior and internal microstructure of the catalyst, which modifies the electron state, ultimately impacting the catalytic activity of the gel polymer catalysts. In particular, phenyl-containing Ph-FL1 with short alkyl sidechains demonstrates outstanding 2e ORR activity in alkaline medium, achieving a remarkable hydrogen peroxide (HO) selectivity of 98.6% with an impressive yield of 4.08 mol g h. This performance surpasses most metal-free carbon-based electrocatalysts. Through theoretical calculation, the carbon atom (site-3) of C═N group is identified as potential active sites, representing a significant advancement toward designing cost-effective and efficient ORR electrocatalysts.

摘要

聚合物凝胶以其无与伦比的化学稳定性和自持特性而闻名,在电催化领域备受关注。值得注意的是,具有温度敏感性且包含合适极性非挥发性液体的有机聚合物凝胶,能提高电子导电性并赋予独特的形态特征,但作为氧还原反应(ORR)的电催化剂在很大程度上仍未得到充分探索。为解决这一问题,提出了一种创新策略,用于协同调节主链分子骨架的刚性和烷基侧链的长度,从而开发出具有溶胶 - 凝胶温度敏感相变的有机凝胶聚合物,有望在电催化过程中实现高选择性和增强活性。值得注意的是,烷基侧链长度的缩短会显著影响催化剂的凝胶化行为和内部微观结构,进而改变电子状态,最终影响凝胶聚合物催化剂的催化活性。特别是,具有短烷基侧链的含苯基的Ph - FL1在碱性介质中表现出出色的2e ORR活性,实现了98.6%的显著过氧化氢(HO)选择性,产率高达4.08 mol g h。这一性能超过了大多数无金属碳基电催化剂。通过理论计算,C═N基团的碳原子(位点 - 3)被确定为潜在的活性位点,这代表了在设计经济高效的ORR电催化剂方面的重大进展。

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