气凝胶
材料科学
亚胺
共价键
多孔性
动态共价化学
共价有机骨架
金属有机骨架
吸附
金属
化学工程
纳米技术
催化作用
有机化学
分子
化学
复合材料
超分子化学
工程类
冶金
作者
Akim Khobotov‐Bakishev,Partha Samanta,Kornel Roztocki,Jorge Albalad,Sergio Royuela,Shuhei Furukawa,Félix Zamora,Arnau Carné‐Sánchez,Daniel Maspoch
标识
DOI:10.1002/adfm.202312166
摘要
Abstract Aerogels are porous ultralight materials known for their high porosity, wide range of pore sizes, low density, and good macroscopic mechanical properties, all of which make them promising candidates for shaped adsorbents, catalysts, and insulators, among other applications. Here, this work reports a new approach that enables both the formation of modular aerogels, via dynamic covalent chemistry, and their post‐synthetic modification, via coordination chemistry. To demonstrate this strategy, this work first polymerizes porous amino‐functionalized Rh(II)‐based metal‐organic polyhedra (MOPs) with aldehydes, which afforded robust imine‐gel networks that is then converted into aerogels. Next, this work functionalizes these aerogels through the coordination of ligands on the axial site of Rh(II) paddlewheels of the MOP. Interestingly, in this chemistry, the local changes in the coordination site of the MOPs are transferred to the overall aerogel, thereby altering its macroscopic physicochemical properties. Importantly, this feature enables the synthesis of optimized adsorbents tailored to specific guests, as this work demonstrates through a series of experiments using ligands of different electrostatic and hydrophobic characters.
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