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Porphyrinic zirconium metal-organic frameworks: Synthesis and applications for adsorption/catalysis

机译:卟啉锆金属 - 有机框架:吸附/催化的合成和应用

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摘要

Zr-based porphyrinic MOFs, which have isolated porphyrin units imbedded in MOFs' rigid structure, exhibit excellent textural properties and high stability. Among the porphyrin ligands, tetrakis(4-carboxyphenyl)-porphyrin (TCPP) is broadly employed, and so far, seven Zr-based porphyrinic MOFs of MOF-525, MOF-545 (also named PCN-222), PCN-221, PCN-223, PCN-224, PCN-225, and NU-902 have been synthesized using TCCP. The built-in TCPP ligand with various functionality and coordinatively unsaturated Zr clusters can be subjected to diverse pre- and post-synthesis functionalization or guest encapsulation. Aided by the excellent hydrothermal/chemical stability and high porosity, these Zr-based porphyrinic MOFs are gaining attention for applications in adsorption, sensors, heterogeneous catalysis for chemical conversions, photocatalysis, electrocatalysis, and others. This paper reviews the current status of research and development on the synthesis, characterization, functionalization, and adsorption/catalysis applications of Zr-based porphyrinic MOFs.
机译:基于Zr的卟啉MOF,其具有嵌入MOF刚性结构的隔离卟啉单位,具有出色的纹理性能和高稳定性。在卟啉配体中,大广义使用四(4-羧基苯基) - 孢子(TCPP),到目前为止,MOF-525,MOF-545(也称为PCN-222),PCN-221,七种Zr基卟啉MOF,使用TCCP合成PCN-223,PCN-224,PCN-225和NU-902。具有各种功能和协调不饱和ZR簇的内置TCPP配体可以进行多样化的,后官能化或访客封装。通过优异的水热/化学稳定性和高孔隙率,这些ZR基卟啉MOF是对吸附,传感器,化学转换,光催化,电致催化等的吸附,传感器,异质催化的应用的关注。本文审查了ZR基卟啉MOF的合成,表征,官能化和吸附/催化作用的现状。

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