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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Development of a molecularly imprinted photoelectrochemical sensing platform based on NH2-MIL-125(Ti)-TiO2 composite for the sensitive and selective determination of oxtetracycline
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Development of a molecularly imprinted photoelectrochemical sensing platform based on NH2-MIL-125(Ti)-TiO2 composite for the sensitive and selective determination of oxtetracycline

机译:基于NH2-MIL-125(Ti)-tio2复合材料的分子印迹光电化学传感平台的研制敏感和选择性测定Oxtrarycline

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In this work, a molecularly imprinted photoelectmchemical (MIP-PEC) sensor based on a novel PEC composite of metal-organic frameworks (MOFs) and TiO2 (NH2-MIL-125(Ti)-TiO2) was established for the ultrasensitive and selective detection of oxytetracycline (OTC). This is the first attempt of applying MOFs in the construction of MIP-PEC sensor. The NH2-MIL-125(TH-TiO2 was synthesized by a simple one-step solvothermal method and modified onto the surface of indium tin oxide (ITO) electrode as the photosensitive layer. Subsequently, molecularly imprinted polymer (MIP) was modified as recognition element by electropolymerization. The NH2 MIL-125(T)-TiO2 showed an enhanced photocurrent response due to stronger light absorption capacity and matched energy band. Furthermore, MIP greatly improved the selectivity and sensitivity of the constructed PEC sensor. The photocurrent response of the MIP-PEC sensor was reduced after OTC recognition because the specific binding of OTC to the imprinted cavities blocked the electron transfer of the electrode. Under optimal experimental conditions, the MIP-PEC sensor exhibited a wide detection range from 0.1 nM to 10 mu M with a low limit of detection (LOD) of 60 pM, as well as certain reproducibility, stability and good applicability in real samples. The proposed sensor provides ideas for the application of MOFs in the construction of PEC sensors and will offer an alternative method for the detection of other pollutants in the field of food safety.
机译:在这项工作中,基于金属有机框架(MOF)和TiO2(NH2-MIL-125(Ti)-TiO2)的新型PEC复合物,建立了一种分子印迹光电化学(MIP-PEC)传感器,用于土霉素(OTC)的超灵敏和选择性检测。这是MOF在MIP-PEC传感器构建中的首次尝试。通过简单的一步溶剂热法合成了NH2-MIL-125(TH-TiO2),并将其修饰到氧化铟锡(ITO)电极表面作为光敏层。随后,通过电聚合将分子印迹聚合物(MIP)改性为识别元件。由于更强的光吸收能力和匹配的能带,NH2 MIL-125(T)-TiO2显示出增强的光电流响应。此外,MIP大大提高了所构建PEC传感器的选择性和灵敏度。OTC识别后,MIP-PEC传感器的光电流响应降低,因为OTC与印迹空腔的特异性结合阻止了电极的电子转移。在最佳实验条件下,MIP-PEC传感器的检测范围从0.1 nM到10μM不等,检测下限(LOD)为60 pM,并且在实际样品中具有一定的再现性、稳定性和良好的适用性。该传感器为MOF在PEC传感器构建中的应用提供了思路,并将为食品安全领域的其他污染物检测提供一种替代方法。

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