Issue 20, 2020

A rare 4-connected neb-type 3D chiral polyoxometalate framework based on {KNb24O72} clusters

Abstract

A rare 3D porous chiral polyoxoniobate framework, [Cu(en)2(H2O)]2{[Cu(en)]4[Cu(en)2]5 {[Cu(en)2KNb24O72H10]2}·6en·70H2O(1) (en = ethylenediamine) based on two types of isomeric {Cu(en)2KNb24O72H10} clusters (α-CuKNb24 and β-CuKNb24) has been synthesized by a hydrothermal reaction. Interestingly, the α-CuKNb24 and β-CuKNb24 clusters are connected by cupric complexes to form chiral helical pillars with left-handedness (L-α-CuKNb24) and right-handedness (R-β-CuKNb24). To our knowledge, compound 1 is the first polyoxometalate-based MOF with a 4-connected neb-type topology structure within polyoxometalate chemistry. This compound also exhibits proton conduction and strong water vapor adsorption properties.

Graphical abstract: A rare 4-connected neb-type 3D chiral polyoxometalate framework based on {KNb24O72} clusters

Supplementary files

Article information

Article type
Research Article
Submitted
05 Aug 2020
Accepted
28 Aug 2020
First published
01 Sep 2020

Inorg. Chem. Front., 2020,7, 3919-3924

A rare 4-connected neb-type 3D chiral polyoxometalate framework based on {KNb24O72} clusters

Z. Zhu, L. Lin, J. Zhang, X. Li, Y. Sun and S. Zheng, Inorg. Chem. Front., 2020, 7, 3919 DOI: 10.1039/D0QI00927J

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