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A microporous <b>shp</b>-topology metal–organic framework with an unprecedented high-nuclearity Co<sub>10</sub>-cluster for iodine capture and histidine detection

Kun Wu, Yong‐Liang Huang, Ji Zheng, Dong Luo, Mo Xie, Yan Yan Li, Weigang Lu, Dan Li

2021Materials Chemistry Frontiers46 citationsDOI

Abstract

A microporous <bold>shp</bold>-topology metal–organic framework (<bold>JNU-200</bold>) constructed with 12-connected high-nuclearity Co<sub>10</sub>-cluster and 4-connected carboxylate ligand for iodine capture and histidine detection.

Topics & Concepts

Microporous materialMetal-organic frameworkTopology (electrical circuits)Cluster (spacecraft)CarboxylateLigand (biochemistry)Materials scienceIodinePrussian blueCrystallographyHistidineChemistryInorganic chemistryStereochemistryPhysical chemistryOrganic chemistryComputer scienceAdsorptionBiochemistryCombinatoricsEnzymeElectrodeElectrochemistryMathematicsProgramming languageReceptorMetal-Organic Frameworks: Synthesis and ApplicationsMagnetism in coordination complexesCovalent Organic Framework Applications
A microporous <b>shp</b>-topology metal–organic framework with an unprecedented high-nuclearity Co<sub>10</sub>-cluster for iodine capture and histidine detection | Litcius