甲醇
乙醇氧化酶
化学
生物分析
过氧化氢
光电流
聚合物
色谱法
生物传感器
荧光
纳米技术
材料科学
有机化学
生物化学
重组DNA
物理
基因
量子力学
光电子学
毕赤酵母
作者
Javier Barroso,Beatriz Díez‐Buitrago,Laura Saá,Marco Möller,Nerea Briz,Valeri Pavlov
标识
DOI:10.1016/j.bios.2017.10.022
摘要
Methanol is a poison which is frequently discovered in alcoholic beverages. Innovative methods to detect methanol in alcoholic beverages are being constantly developed. We report for the first time a new strategy for the detection of methanol using fluorescence spectroscopy and photoelectrochemical (PEC) analysis. The analytical system is based on the oxidation of cysteine (CSH) with hydrogen peroxide (H2O2) enzymatically generated by alcohol oxidase (AOx). H2O2 oxidizes capping agent CSH, modulating the growth of CSH-stabilized cadmium sulphide quantum dots (CdS QDs). Disposable screen-printed carbon electrodes (SPCEs) modified with a conductive osmium polymer (Os-PVP) complex were employed to quantify resulting CdS QDs. This polymer facilitates the "wiring" of in situ enzymatically generated CdS QDs, which photocatalyze oxidation of 1-thioglycerol (TG), generating photocurrent as the readout signal. Likewise, we proved that our systems did not suffer from interference by ethanol. The PEC assays showed better sensitivity than conventional methods, covering a wide range of potential applications for methanol quantification.
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