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首页> 外文期刊>ACS applied materials & interfaces >Photochemiresistor Sensor Development Based on a Bismuth Vanadate Type Semiconductor for Determination of Chemical Oxygen Demand
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Photochemiresistor Sensor Development Based on a Bismuth Vanadate Type Semiconductor for Determination of Chemical Oxygen Demand

机译:基于铋钒型半导体的光电沉默电脑传感器开发,用于测定化学需氧量

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摘要

The present paper describes the development of a novel photochemiresistor sensor for the determination of chemical oxygen demand (COD). A chemiresistive device was produced by a thin film of the monoclinic phase of bismuth vanadate deposited on an FTO glass surface. The resistive properties of the photosensor were carried out by electrochemical impedance spectroscopy (EIS). The electrical resistance of the platform was dependent on the presence of organic material in aqueous solution and the incidence of light. The decrease in resistance can be explained by considering that by increasing the amount of organic material, the amount of charge transferred to BiVO4 increases, as does the amount of the photogenerated conduction band on the film. This behavior is not observed when carrying out the same measurements in the absence of light. Under the optimal experimental conditions, the linear response of the chemiresistor sensor is between 0.20 and 19.9 mg L-1 COD at a fixed AC frequency of 0.1 Hz. There is a good correlation between the charge transfer resistance and COD concentration in the electrolyte solution. Quantification of COD in waste and lake waters was successfully performed using the novel photochemiresistor sensor. The results achieved in the analysis with the sensor are in accordance with the conventional method.
机译:本文介绍了一种开发新颖的光学层压器传感器,用于测定化学需氧量(COD)。通过沉积在FTO玻璃表面上沉积在FTO玻璃表面的铋型钒酸盐的单斜膜的薄膜产生了化学的装置。光电传感器的电阻性能通过电化学阻抗光谱(EIS)进行。平台的电阻取决于水溶液中有机材料的存在和光的发生率。可以通过考虑通过增加有机材料的量,转移到BIVO4的电荷量增加的电阻的降低增加,薄膜上的光发化导带的量。当在没有光的情况下执行相同的测量时,未观察到这种行为。在最佳实验条件下,ChemiSistor传感器的线性响应在0.1Hz的固定交流频率下的0.20和19.9mg L-1 COD之间。电解质溶液中的电荷传递电阻和COD浓度之间存在良好的相关性。使用新颖的PhotochemireSistor传感器成功地进行了废物和湖水中鳕鱼的量化。在传感器分析中实现的结果符合常规方法。

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