Issue 7, 2023

Organophosphonic acid and cerium functionalized antimonotungstate with electrochemical promise in biosensing bacterial dissimilatory sulfite reductase gene sequence

Abstract

The rational design and synthesis of organically functionalized cluster-based materials has always been a hot topic. Polyoxometalates (POMs) have become primary candidates for fabricating novel organic–inorganic hybrid cluster-based materials owing to their multiple coordination sites and modes, unique electronic configurations and variable constituents. Herein, an unprecedented organophosphonic acid and cerium functionalized antimonotungstate [H2N(CH3)2]9Na12H6{[Ce3(H2O)2W8(Hgps)2O20][B-α-SbW9O33]4}·66H2O (1, H5gps = glyphosine) was synthesized in CH3COOH–CH3COONa buffer solution. Its tetrameric polyanion [Ce3(H2O)2W8(Hgps)2O20][SbW9O33]427− consists of four Keggin [B-α-SbW9O33]9−({SbW9}) segments linked by a dumbbell-shaped [Ce3(H2O)2W8(Hgps)2O20]9+ core. Furthermore, we prepared a ternary composite material (denoted as Au-rGO-1) containing 1, reduced graphene oxide (rGO) and Au nanoparticles, which exhibits remarkable electrical conductivity and long-term stability. Subsequently, Au-rGO-1 was applied as an electrode modification material to construct an electrochemical DNA biosensor (EDB) for detecting the bacterial dissimilatory sulfite reductase (DSR) gene from sulfate-reducing bacteria, and the MB/dsDNA/Au-rGO-1/GCE EDB shows outstanding sensitivity, selectivity and anti-interference capability for detecting the DSR DNA sequence. This research provides an accessible strategy for synthesizing organophosphonic acid and lanthanide functionalized POMs and also demonstrates the great potential of POM-based materials in the application of detecting the DSR gene sequence.

Graphical abstract: Organophosphonic acid and cerium functionalized antimonotungstate with electrochemical promise in biosensing bacterial dissimilatory sulfite reductase gene sequence

Supplementary files

Article information

Article type
Research Article
Submitted
16 Jan 2023
Accepted
30 Jan 2023
First published
31 Jan 2023

Mater. Chem. Front., 2023,7, 1321-1334

Organophosphonic acid and cerium functionalized antimonotungstate with electrochemical promise in biosensing bacterial dissimilatory sulfite reductase gene sequence

Z. Tang, W. Zhang, Y. Hu, X. Jia, L. Meng, D. Wang, L. Chen and J. Zhao, Mater. Chem. Front., 2023, 7, 1321 DOI: 10.1039/D3QM00062A

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