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通过星形聚合物的自由基介导异质接枝制备用于表面改性的拼接式金属有机框架

Patchwork Metal-Organic Frameworks by Radical-Mediated Heterografting of Star Polymers for Surface Modification.

作者信息

Ahn Nam Young, Lee Jooyeon, Yeo Wonjune, Park Hyojin, Nam Jiyun, Kim Min, Seo Myungeun

机构信息

Department of Chemistry, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea.

Department of Chemistry, Chungbuk National University, Cheongju 28644, Republic of Korea.

出版信息

Inorg Chem. 2022 Jul 11;61(27):10365-10372. doi: 10.1021/acs.inorgchem.2c00906. Epub 2022 Jun 27.

Abstract

We report a synthetic methodology for decorating a surface of metal-organic frameworks (MOFs) with polymers through postsynthetic modification. Well-defined polymers with reversibly deactivated radical species at their chain end were reacted with vinyl-functionalized MOFs in the presence of a radical initiator. The radical addition forms a C-C bond between the polymer end with the functional group at the MOF ligand. We used sterically bulky star polymers containing electron-deficient maleimide chain ends, which facilitated modification of the external surface, yielding polymer-grafted MOF composite particles. A patchy MOF particle can also be obtained by simultaneously grafting two polymers and jammed at the immiscible liquid-liquid interface. We further show that the selective removal of a sacrificial polymer would partially expose the surface of MOFs to external environment, which hinders the uptake of macromolecular guests above the critical hydrodynamic size. Overall, four polymer@MOF composites have successfully been achieved through the present postsynthetic patchworks on MOFs with star polymers and selective etching process.

摘要

我们报道了一种通过后合成修饰用聚合物修饰金属有机框架(MOF)表面的合成方法。在链端带有可逆失活自由基物种的明确聚合物在自由基引发剂存在下与乙烯基官能化的MOF反应。自由基加成在聚合物末端与MOF配体上的官能团之间形成C-C键。我们使用了含有缺电子马来酰亚胺链端的空间位阻大的星形聚合物,这有助于外表面的修饰,得到聚合物接枝的MOF复合颗粒。通过同时接枝两种聚合物并在不混溶的液-液界面处堵塞,也可以获得斑驳的MOF颗粒。我们进一步表明,选择性去除牺牲聚合物会使MOF的表面部分暴露于外部环境,这阻碍了临界流体动力学尺寸以上的大分子客体的摄取。总体而言,通过目前用星形聚合物对MOF进行的后合成拼接和选择性蚀刻过程,已成功制备出四种聚合物@MOF复合材料。

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