Issue 2, 2022

Dual-heteroatom-templated lanthanoid-inserted heteropolyoxotungstates simultaneously comprising Dawson and Keggin subunits and their composite film applied for electrochemical immunosensing of auximone

Abstract

Two PIII–SbIII-heteroatom-templated lanthanoid(Ln)-inserted polyoxotungstates [H2N(CH3)2]10NaH9[Ln4(H2O)14W7O15 (H2MA)4][SbIIIW9O33]2[HPIIISbIIIW15O54]2·44H2O [Ln = Nd3+ (1), Pr3+ (2)] embellished with DL-malic acid (H3MA) ligand were achieved for the first time. The [Ln4(H2O)14W7O15(H2MA)4][SbIIIW9O33]2[HPIIISbIIIW15O54]220− polyanion is assembled from two trivacant Keggin [B-α-SbIIIW9O33]9− and two trivacant Dawson PIII–SbIII-inserted [HPIIISbIIIW15O54]11− moieties linked via a central [Ln4(H2O)14W7O15(H2MA)4]20+ hybrid cluster. Moreover, adjacent polyanions are connected by Ln–O–W linkers, thus affording an intriguing 1-D structure. The 1@PPY (PPY = polypyrrole) conductive film was fabricated by the electrodeposition of 1 and pyrrole. By virtue of 1@PPY film modified glassy carbon electrode as the electrochemical immunosensor, electrochemical detection of auximone (herein indole-3-acetic acid) was realized. This research pioneers the preparation of PIII–SbIII-heteroatom-templated Ln-inserted polyoxotungstates and develops the application of POM-based materials for detecting auximone in botany.

Graphical abstract: Dual-heteroatom-templated lanthanoid-inserted heteropolyoxotungstates simultaneously comprising Dawson and Keggin subunits and their composite film applied for electrochemical immunosensing of auximone

Supplementary files

Article information

Article type
Research Article
Submitted
04 Oct 2021
Accepted
22 Nov 2021
First published
23 Nov 2021

Inorg. Chem. Front., 2022,9, 350-362

Dual-heteroatom-templated lanthanoid-inserted heteropolyoxotungstates simultaneously comprising Dawson and Keggin subunits and their composite film applied for electrochemical immunosensing of auximone

S. Xie, D. Wang, Z. Wang, J. Liu, L. Chen and J. Zhao, Inorg. Chem. Front., 2022, 9, 350 DOI: 10.1039/D1QI01246K

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