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Microbial Synthesis of Antimony Sulfide to Prepare Catechol and Hydroquinone Electrochemical Sensor by Pyrolysis and Carbonization.

Xiaopeng Jiang,Yue Yuan, Xiaomeng Zhao,Chunli Wan,Changyong Wu, Yutong Duan

Environmental research(2024)

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Abstract
The application of antimony sulfide sensors, characterized by their exceptional stability and selectivity, is of emerging interest in detection research, and the integration of graphitized carbon materials is expected to further enhance their electrochemical performance. This study represents a pioneering effort in the synthesis of carbondoped antimony sulfide materials through the pyrolysis of the mixture of microorganisms and their synthetic antimony sulfide. The prepared materials are subsequently applied to electrochemical sensors for monitoring the highly toxic compounds catechol (CC) and hydroquinone (HQ) in the environment. Via cyclic voltammetry (CV) and impedance testing, we concluded that the pyrolytic product at 700 degrees C (Sb-700) demonstrated the best electrochemical properties. Differential pulse voltammetry (DPV) revealed impressive separation when utilizing Sb-700/GCE for simultaneous detection of CC and HQ, exhibiting good linearity within the concentration range of 0.1-140 mu M. The achieved sensitivities of 24.62 mu A mu M-1 cm-2 and 22.10 mu A mu M-1 cm-2 surpassed those of most CC and HQ electrochemical sensors. Meanwhile, the detection limits for CC and HQ were as low as 0.18 mu M and 0.16 mu M (S/N = 3), respectively. Additional tests confirmed the good selectivity, reproducibility, and longterm stability of Sb-700/GCE, which was effective in detecting CC and HQ in tap water and river water, with recovery rates of 100.7%-104.5% and 96.5%-101.4%, respectively. It provides a method that combines green microbial synthesis and simple pyrolysis for the preparation of electrode materials in CC and HQ electrochemical sensors, and also offers a new perspective for the application of microbial synthesized materials.
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Key words
Electrochemical sensor,Microbial synthesis,Pyrolysis,Differential pulse voltammetry,Catechol and hydroquinone,Simultaneous detection
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