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基于定制聚(烯链烯)的聚合物-金属-有机框架(聚金属有机框架)

Polymer-Metal-Organic Frameworks (polyMOFs) Based on Tailor-Made Poly(alkenamer)s.

作者信息

Mondal Prantik, Sensharma Debobroto, Cohen Seth M

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093, United States.

出版信息

Chem Mater. 2024 Oct 2;36(19):9696-9703. doi: 10.1021/acs.chemmater.4c01794. eCollection 2024 Oct 8.

Abstract

Polymeric linkers used to construct porous, crystalline polymer-metal-organic frameworks (polyMOFs) are predominantly based on macromolecules with metal-coordinating ligand units (e.g., 1,4-benzenedicarboxylic acid, Hbdc) included in the primary polymer backbone. Polymers with ligand units as pendants or dangling side chain substituents have been far less explored for the synthesis of polyMOFs, despite the fact that such systems may have distinct properties and could take advantage of a variety of chain polymerization methods. Prevailing reports are based on nonliving polymerized linkers with Hbdc pendants that generated polyMOFs with key shortcomings in controlling the polymerization, tailoring polymeric linker composition and polyMOF properties, accessing porosity, etc. Herein, polymers containing Hbdc units as pendants were designed and synthesized via controlled olefin-metathesis polymerization. These poly(alkenamer)s were subsequently assembled into porous, crystalline networks with an isoreticular MOF (IRMOF) lattice topology. These polymer architectures and polymerization methodologies provide access to the formation of polyMOFs with tailored characteristics, including controlled composition, narrow dispersity, and side chain functionalization.

摘要

用于构建多孔晶体聚合物 - 金属有机框架(聚金属有机框架,polyMOFs)的聚合物连接体主要基于在主聚合物主链中包含金属配位配体单元(例如1,4 - 苯二甲酸,Hbdc)的大分子。尽管具有配体单元作为侧基或悬挂侧链取代基的聚合物在合成聚金属有机框架方面的探索要少得多,但事实上这样的体系可能具有独特的性质,并且可以利用多种链式聚合方法。现有报道基于带有Hbdc侧基的非活性聚合连接体,这些连接体生成的聚金属有机框架在控制聚合、定制聚合物连接体组成和聚金属有机框架性质、实现孔隙率等方面存在关键缺陷。在此,通过可控烯烃复分解聚合设计并合成了含有Hbdc单元作为侧基的聚合物。随后,这些聚(烯链聚合物)被组装成具有同构金属有机框架(IRMOF)晶格拓扑结构的多孔晶体网络。这些聚合物结构和聚合方法为形成具有定制特性的聚金属有机框架提供了途径,包括可控的组成、窄分散性和侧链功能化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dda0/11467828/5e9b7c0e6a0d/cm4c01794_0001.jpg

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