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接枝型微孔聚合物:设计、合成与应用。

Conjugated microporous polymers: design, synthesis and application.

机构信息

Department of Materials Molecular Science, Institute for Molecular Science, National Institutes of Natural Sciences, 5-1 Higashiyama, Okazaki 444-8787, Japan.

出版信息

Chem Soc Rev. 2013 Oct 21;42(20):8012-31. doi: 10.1039/c3cs60160a.

Abstract

Conjugated microporous polymers (CMPs) are a class of organic porous polymers that combine π-conjugated skeletons with permanent nanopores, in sharp contrast to other porous materials that are not π-conjugated and with conventional conjugated polymers that are nonporous. As an emerging material platform, CMPs offer a high flexibility for the molecular design of conjugated skeletons and nanopores. Various chemical reactions, building blocks and synthetic methods have been developed and a broad variety of CMPs with different structures and specific properties have been synthesized, driving the rapid growth of the field. CMPs are unique in that they allow the complementary utilization of π-conjugated skeletons and nanopores for functional exploration; they have shown great potential for challenging energy and environmental issues, as exemplified by their excellent performance in gas adsorption, heterogeneous catalysis, light emitting, light harvesting and electrical energy storage. This review describes the molecular design principles of CMPs, advancements in synthetic and structural studies and the frontiers of functional exploration and potential applications.

摘要

功能化的微孔聚合物(CMPs)是一类有机多孔聚合物,它们将π共轭骨架与永久纳米孔结合在一起,与其他非π共轭的多孔材料和传统的无孔共轭聚合物形成鲜明对比。作为一种新兴的材料平台,CMPs 为共轭骨架和纳米孔的分子设计提供了高度的灵活性。已经开发了各种化学反应、构建块和合成方法,并合成了具有不同结构和特定性能的各种 CMPs,推动了该领域的快速发展。CMPs 的独特之处在于,它们允许互补利用 π 共轭骨架和纳米孔进行功能探索;它们在解决能源和环境问题方面表现出了巨大的潜力,例如在气体吸附、多相催化、发光、光捕获和电能存储方面的优异性能。本文综述了 CMPs 的分子设计原则、合成和结构研究的进展以及功能探索和潜在应用的前沿领域。

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