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The electrochemical reaction controlled optical response of cholestrol oxidase (COx) conjugated CdSe/ZnS quantum dots

机译:胆囊氧化酶(COX)共轭CDSE / ZNS量子点的电化学反应控制光学响应

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This paper reports the enhanced performance of cholesterol oxidase (COx) conjugated CdSe/ZnS quantum dots (QDs) by using water-soluble mercaptoacitic acid (MAA) as linker. The functionalized MAA-CdSe/ZnS QDs conjugated in four different dilutions of cholesterol oxidase significantly affected QDs photoluminescence intensities, which affected the process of charge transfer from QDs to MAA. The conjugation of COx to MAA-QDs in increased dilutions resulted in the regain of PL intensities, which were attributed to the passivation of MAA HOMO/LUMO states. The electrochemical impedance spectroscopy and cyclic voltammetry of the conjugated QDs were performed to get study the charge transfer mechanism. The 1:1000 diluted COx conjugated MAA-CdSe/ZnS QDs was found to have the lowest charge transfer resistance of 228 Ω, the highest diffusion (~?1.39?×?10–13 cm2/s) and charge transfer rates (~?4.5?×?10–6?s?1) between the electrode and the redox species. The current study demonstrated the sensitivity of electrochemical and optical based detection on the alkaline.
机译:本文报道了胆固醇氧化酶(COX)缀合的CDSE / ZnS量子点(QDS)作为接头的增强性能。在四种不同稀释胆固醇氧化酶中缀合的官能化的MAA-CDSE / ZnS QDS显着影响了QDS光致发光强度,这影响了从QDS到MAA的电荷转移过程。 COX对MAA-QD在增加的稀释液中的缀合导致PL强度的重新获得,这归因于MAA HOMO / LUMO状态的钝化。进行缀合QD的电化学阻抗光谱和循环伏安法,以研究电荷转移机制。发现1:1000稀释的COX共轭MAA-CDSE / ZnS QDS具有228Ω的最低电荷传递电阻,最高的扩散(~~~1.39?×10-13cm2 / s)和电荷转移率(〜?在电极和氧化还原物种之间的4.5?×10-6?s?1)。目前的研究表明了电化学和基于光学检测对碱性的敏感性。

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