Song Yanpei, Lan Pui Ching, Martin Kyle, Ma Shengqian
Department of Chemistry, University of North Texas 1508 W Mulberry St Denton TX 76201 USA
Nanoscale Adv. 2021 Jul 22;3(17):4891-4906. doi: 10.1039/d1na00479d. eCollection 2021 Aug 25.
Conjugated microporous polymers (CMPs) are an emerging class of porous organic polymers that combine π-conjugated skeletons with permanent micropores. Since their first report in 2007, the enormous exploration of linkage types, building units, and synthetic methods for CMPs have facilitated their potential applications in various areas, from gas separations to energy storage. Owning to their unique construction, CMPs offer the opportunity for the precise design of conjugated skeletons and pore environment engineering, which allow the construction of functional porous materials at the molecular level. The capability to chemically alter CMPs to targeted applications allows for the fine adaptation of functionalities for the ever-changing environments and necessities. Bifunctional CMPs are a branch of functionalized CMPs that have caught the interest of researchers because of their inherent synergistic systems that can expand their applications and optimize their performance. This review discusses the rational design and synthesis of bifunctional CMPs and summarizes their advanced applications. To conclude, our own perspective on the research prospects of these types of materials is outlined.
共轭微孔聚合物(CMPs)是一类新兴的多孔有机聚合物,它将π共轭骨架与永久性微孔相结合。自2007年首次报道以来,对CMPs的连接类型、构建单元和合成方法的大量探索促进了它们在从气体分离到能量存储等各个领域的潜在应用。由于其独特的结构,CMPs为共轭骨架的精确设计和孔环境工程提供了机会,这使得在分子水平上构建功能性多孔材料成为可能。将CMPs化学改性以用于特定应用的能力允许针对不断变化的环境和需求对功能进行精细调整。双功能CMPs是功能化CMPs的一个分支,由于其固有的协同体系能够扩展其应用并优化其性能,因而引起了研究人员的兴趣。本文综述了双功能CMPs的合理设计与合成,并总结了它们的先进应用。最后,概述了我们对这类材料研究前景的看法。