Issue 22, 2024

A wheel-shaped Zr-substituted phosphotungstate [{Zr(C2O4)2}3 (PO4)(P6W39O150)]39− with tunable proton conduction properties

Abstract

A wheel-shaped Zr-substituted phosphotungstate, [N(CH3)4]2K16Na10.5H10.5[{Zr(C2O4)2}3(PO4)(P6W39O150)]·45H2O (1), was synthesised from a hexavacant Dawson-type precursor [H2P2W12O48]12−via a conventional solution method. Compound 1 features a wheel-shaped polyanion comprising an annular [P6W39O150]36− cluster supported by a turbine-shaped [{Zr(C2O4)2}3(PO4)]3− fragment, with three oxalate groups covalently anchored to W atoms. Compound 1 was systematically characterized by IR, UV, PXRD, TGA and 31P NMR spectra. The 31P NMR spectra over time were monitored to verify the stability of 1 in aqueous solution. This compound possesses remarkable proton conductive behavior with a high conductivity of 1.18 × 10−2 S cm−1 at 368 K.

Graphical abstract: A wheel-shaped Zr-substituted phosphotungstate [{Zr(C2O4)2}3 (PO4)(P6W39O150)]39− with tunable proton conduction properties

Supplementary files

Article information

Article type
Communication
Submitted
15 Jan 2024
Accepted
06 Feb 2024
First published
13 Feb 2024

Chem. Commun., 2024,60, 3043-3046

A wheel-shaped Zr-substituted phosphotungstate [{Zr(C2O4)2}3 (PO4)(P6W39O150)]39− with tunable proton conduction properties

D. Yang, L. Liu, Y. Zhang, M. Zhang, P. Ma, J. Wang and J. Niu, Chem. Commun., 2024, 60, 3043 DOI: 10.1039/D4CC00216D

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