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构建用于玉米中赭曲霉毒素A快速灵敏检测不同场景的双信号输出传感平台。

Construction of dual-signal output sensing platform for different scene of rapid and sensitive ochratoxin A detection in corn.

作者信息

Feng Xujing, Yuan Ruishuang, Liu Liqi, Ding Lijun, Long Lingliang, Wang Kun

机构信息

School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, 212013, PR China.

School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, 212013, PR China; Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science, OE, School of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao, 266042, PR China.

出版信息

Talanta. 2025 Jan 1;282:126991. doi: 10.1016/j.talanta.2024.126991. Epub 2024 Oct 4.

Abstract

Photoelectrochemical (PEC) is a highly sensitive and fast analytical method that can be used at low concentrations, while photoelectrochromic is a simple and low-cost method primarily utilized for high concentration detection. Therefore, we have developed a dual-signal output sensing platform based on both PEC and photoelectrochromism for rapid and sensitive OTA detection. The sensing platform is divided into signal generation (SG) region and signal output (SO) region, which modified with WO/BiVO photoactive nanocomposites and polyaniline (PANI), respectively. By irradiating the SG region, photogenerated electrons are generated and injected into the SO region through the conductive pathway, resulting in a decrease in surface blue polyaniline and a change to green. The smart device can accurately measure the RGB-Green values, enabling the construction of a photochromic visual sensing platform. After immobilizing the OTA aptamer in the SG region, a linear correlation was observed between the concentration of OTA and the RGB-Green value within the range of 20 ng/L ∼250 μg/L. The detection limit was determined to be 8.33 ng/L (S/N = 3). Furthermore, for a more sensitive OTA detection, a PEC sensing platform was developed utilizing the SG region as a photoanode, exhibiting a linear correlation in the range of 2 pg/L∼300 μg/L with a detection limit of 0.8 pg/L (S/N = 3). The detection of these two modes under the requirement of the international standard for the maximum limit realizes the sensitive OTA detection. The RGB-Green is verified to PEC signal, which improves the detection accuracy. The sensing platform has several advantages and is suitable for various application scenarios.

摘要

光电化学(PEC)是一种高度灵敏且快速的分析方法,可用于低浓度检测,而光电变色是一种主要用于高浓度检测的简单且低成本的方法。因此,我们基于PEC和光电变色开发了一种双信号输出传感平台,用于快速灵敏地检测OTA。该传感平台分为信号产生(SG)区域和信号输出(SO)区域,分别用WO/BiVO光活性纳米复合材料和聚苯胺(PANI)进行了修饰。通过照射SG区域,产生光生电子,并通过导电通路注入SO区域,导致表面蓝色聚苯胺减少并变为绿色。该智能设备可以准确测量RGB-绿色值,从而构建一个光致变色视觉传感平台。在将OTA适配体固定在SG区域后,观察到在20 ng/L至250 μg/L范围内OTA浓度与RGB-绿色值之间存在线性相关性。检测限确定为8.33 ng/L(S/N = 3)。此外,为了实现更灵敏的OTA检测,利用SG区域作为光阳极开发了一个PEC传感平台,在2 pg/L至300 μg/L范围内呈现线性相关性,检测限为0.8 pg/L(S/N = 3)。在国际标准最大限量要求下对这两种模式进行检测,实现了对OTA的灵敏检测。RGB-绿色被验证为PEC信号,提高了检测准确性。该传感平台具有多个优点,适用于各种应用场景。

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