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首页> 外文期刊>Angewandte Chemie >Molecular-Rotor-Driven Advanced Porous Materials
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Molecular-Rotor-Driven Advanced Porous Materials

机译:分子转子驱动的先进多孔材料

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Advanced porous materials (APMs)-such as metal-organic frameworks (MOFs) and porous organic polymers (POPs)-have emerged as an exciting research frontier of chemistry and materials science. Given their tunable pore size and extensive diversity, APMs have found widespread applications. In addition, adding dynamic functional groups to porous solids furthers the development of stimuli-responsive materials. By incorporating moving elements-molecular rotors-into the porous frameworks, molecular-rotor-driven advanced porous materials (MR-APMs) can respond reversibly to chemical and physical stimuli, thus imparting dynamic functionalities that have not been found in conventional porous materials. This Minireview discusses exemplary MR-APMs in terms of their design, synthesis, rotor dynamics, and potential applications.
机译:先进的多孔材料(APM)——如金属有机骨架(MOF)和多孔有机聚合物(POPs)——已经成为化学和材料科学的一个令人振奋的研究前沿。由于其可调节的孔径和广泛的多样性,APM已得到广泛的应用。此外,向多孔固体中添加动态官能团可以促进刺激响应材料的发展。通过将运动元件分子转子纳入多孔框架中,分子转子驱动的高级多孔材料(MR APMs)可以对化学和物理刺激做出可逆响应,从而赋予传统多孔材料中未发现的动态功能。本文从设计、合成、转子动力学和潜在应用等方面讨论了典型的磁流变有源电力模块。

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