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通过平面三嗪网络将噻吩撑与吡啶撑结合用于有机氧还原反应电催化剂的应用。

Thienylene combined with pyridylene through planar triazine networks for applications as organic oxygen reduction reaction electrocatalysts.

作者信息

Sato Kosuke, Osada Nodoka, Aihara Hidenori

机构信息

Organic Materials Chemistry Group, Sagami Chemical Research Institute 2743-1 Hayakawa Ayase Kanagawa 252-1193 Japan

Course of Applied Science, Graduate School of Engineering, Tokai University 4-1-1 Kitakaname Hiratsuka Kanagawa 259-1292 Japan.

出版信息

RSC Adv. 2023 Apr 17;13(17):11794-11799. doi: 10.1039/d3ra01431b. eCollection 2023 Apr 11.

Abstract

Covalent triazine networks are interesting candidates for organic electrocatalytic materials due to their tunable, durable and sustainable nature. However, the limited availability of molecular designs that ensure both two-dimensionality and functional groups in the π-conjugated plane has hindered their development. In this work, a layered triazine network composed of thiophene and pyridine ring was synthesized by the novel mild liquid phase condition. The resulting network showed layered nature since its intramolecular interaction stabilized its planar conformation. The connection on the 2-position of the heteroaromatic ring prevents steric hindrance. The simple acid treatment method could be used to exfoliate the networks, resulting in high yields of nanosheets. The planar triazine network showed superior electrocatalytic properties for the oxygen reduction reaction in the structure-defined covalent organic networks.

摘要

共价三嗪网络因其可调节、耐用和可持续的特性,是有机电催化材料的有趣候选物。然而,确保π共轭平面中二维性和官能团的分子设计有限,阻碍了它们的发展。在这项工作中,通过新型温和的液相条件合成了由噻吩和吡啶环组成的层状三嗪网络。所得网络呈现出层状性质,因为其分子内相互作用稳定了其平面构象。杂芳环2位上的连接防止了空间位阻。简单的酸处理方法可用于剥离网络,从而高产率地得到纳米片。在结构明确的共价有机网络中,平面三嗪网络对氧还原反应表现出优异的电催化性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/588a/10107030/8e9059773b45/d3ra01431b-f1.jpg

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