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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Ternary heterojunctions composed of BiOCl, BiVO4 and nitrogen-doped carbon quantum dots for use in photoelectrochemical sensing: effective charge separation and application to ultrasensitive sensing of dopamine
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Ternary heterojunctions composed of BiOCl, BiVO4 and nitrogen-doped carbon quantum dots for use in photoelectrochemical sensing: effective charge separation and application to ultrasensitive sensing of dopamine

机译:由BioCl,Bivo4和氮掺杂碳量子点组成的三元杂疾病,用于光电化学传感:对多巴胺超细感的有效电荷分离和应用

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The use of ternary heterojunctions can lead to superior performance in photoelectrochemical (PEC) sensing. This can be ascribed to effective separation and reduced recombination probability of photogenerated electron-hole pairs. The authors describe the rational design of ternary heterojunctions comoposed of BiOCl, BiVO4 and nitrogen-doped carbon quantum dots (N-CDs). They exhibit enhanced photocurrent compared to the use of BiOCl/BiVO4, BiOCl, or BiVO4. The new material was used in a sensor platform for detection of the neurotransmitter dopamine (DA). Under zero voltage and visible light excitation, DA can be detected in the 1 pM to 10 mu M concentration range, with a 0.3 pM lower detection limit (at an S/N ratio of 3). The sensor has rapid response and was applied to the determination of DA in spiked serum samples. Notably, this work also may assist in a better understanding of the relationship between kind of ternary heterojunctions and PEC performance. Conceivably, it can be extended to other PEC sensor platform and other photocatalytic system associated with photoactive materials.
机译:使用三元杂交功能可能导致光电化学(PEC)感测的优异性能。这可以归因于有效的分离和光源电子 - 孔对的重组概率降低。作者描述了BioCl,BiVo4和氮掺杂碳量子点(N-CD)的加工的三元杂交障碍的合理设计。与使用BioCl / Bivo4,BioCl或Bivo4相比,它们表现出增强的光电流。新材料用于传感器平台,用于检测神经递质多巴胺(DA)。在零电压和可见光激发下,可以在1PP至10μm浓度范围内检测到DA,较低的检测限(以S / N比为3)。传感器具有快速响应,并应用于尖刺血清样品中的DA的测定。值得注意的是,这项工作也可能有助于更好地了解三元异性结合与PEC性能之间的关系。可以想象,它可以扩展到其他PEC传感器平台和与光敏材料相关的其他光催化系统。

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