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含炔基共轭微孔聚合物的杂环调制电子态用于高效氧还原。

Heterocyclic Modulated Electronic States of Alkynyl-Containing Conjugated Microporous Polymers for Efficient Oxygen Reduction.

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. 2023 Apr;19(17):e2207298. doi: 10.1002/smll.202207298. Epub 2023 Jan 26.

Abstract

The oxygen reduction reaction (ORR) is a key process in green energy conversion technology. Heteroatom doping has been proven to be a prospective strategy to prepare metal-free carbon-based electrocatalysts, but such methods often suffer from uncontrollable catalyst frameworks and imprecise active sites. Herein, an organic heterocyclic strategy is adopted to modulate the charge redistribution of alkynyl-containing conjugated microporous polymers (CMPs) by introducing varied five-membered heterocyclic structures. Among these CMPs, the S, 2N-containing thiadiazole heterocyclic molecule (CMP-Tdz) with carbonized alginate materials (C ) displays a remarkable quasi-four-electron-transfer ORR pathway, exhibiting an excellent half-wave potential (E ) of 0.77 V, coupled with superior methanol tolerance and electrochemical stability, which are among the highest performance in the metal-free organic catalytic material systems. Density functional theory calculations prove that the high catalytic performance of these catalysts originates from the sp-hybridized C atom (site-2) which is activated by their adjacent heterocyclic structures. Importantly, the five-membered heterocyclic structures can also modulate the local charge distribution, and increase dipole moment, with significantly improved catalytic kinetics. This incorporation of chemically designed heterocyclic-containing alkynyl-CMPs provides a new approach to developing efficient metal-free carbon-based electrocatalysts for fuel cells.

摘要

氧还原反应(ORR)是绿色能源转换技术中的关键过程。杂原子掺杂已被证明是制备无金属碳基电催化剂的一种有前途的策略,但这种方法往往受到不可控的催化剂结构和不精确的活性位的限制。在此,采用有机杂环策略通过引入不同的五元杂环结构来调节含炔基的共轭微孔聚合物(CMPs)的电荷再分布。在这些 CMPs 中,含有碳化海藻酸盐材料(C)的含硫、氮的噻二唑杂环分子(CMP-Tdz)显示出显著的准四电子 ORR 途径,具有优异的半波电位(E )为 0.77 V,同时具有出色的甲醇耐受性和电化学稳定性,在无金属有机催化材料体系中性能最高。密度泛函理论计算证明,这些催化剂的高催化性能源于其相邻杂环结构激活的 sp 杂化 C 原子(位点 2)。重要的是,五元杂环结构还可以调节局部电荷分布并增加偶极矩,从而显著提高催化动力学。这种含化学设计杂环的炔基-CMPs 的掺入为开发用于燃料电池的高效无金属碳基电催化剂提供了一种新方法。

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