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首页> 外文期刊>ACS applied materials & interfaces >CdS Quantum-Dots-Decorated V2O5 Nanosheets as Chemically Etchable Active Materials for Sensitive Photoelectrochemical Immunoassay of Carcinoembryonic Antigen
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CdS Quantum-Dots-Decorated V2O5 Nanosheets as Chemically Etchable Active Materials for Sensitive Photoelectrochemical Immunoassay of Carcinoembryonic Antigen

机译:CDSultum-Dots装饰的V2O5纳米片作为用于敏感光电化学免疫测定的化学可蚀刻的活性材料甲基丙烯抗原

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We report here CdS quantum-dots (QDs)-decorated V2O5 nanosheets as high-performance and chemically etchable photoelectric active materials for constructing a photoelectrochemical (PEC) immunoassay platform. CdS QDs-decorated V2O5 nanosheets as new photoelectric materials can show superior photocurrent to V2O5 nanosheets and CdS QDs under visible-light irradiation because of the promoted photogenerated electron-hole separation and the increased visible-light absorption. V2O5 nanosheets can be etched by ascorbic acid (AA) because of the reduction of V2O5 to V4+, and the photocurrent of CdS/V2O5-nanocomposite-modified indium tin oxide electrode decreases significantly after being etched by AA. Inspired by this phenomenon, a PEC immunoassay platform is constructed for carcinoembryonic antigen (CEA) detection by using CdS/V2O5 nanocomposite as the photoelectric material and AA-encapsulated liposome immunonanocapsules as labels. The linear detection range for detecting CEA is from 0.5 pg mL(-1) to 1 ng mL(-1), with a limit of detection of 0.1 pg mL(-1). The proposed method also shows good selectivity, excellent reproducibility, and satisfactory recovery in detection of CEA in human serum samples. We believe that this work will lay the foundation for the future development of V2O5-based materials for PEC analysis, and also provide a reasonable design and implementation for the development of PEC immunoassay.
机译:我们在此报告CDS量子点(QDS) - 更高的V2O5纳米片作为高性能和化学可蚀刻的光电活性材料,用于构建光电化学(PEC)免疫测定平台。 CDS QDS装饰的V2O5纳米片作为新的光电材料可以在可见光照射下显示出卓越的光电流,因为促进的光静电电子空穴分离和增加的可见光吸收,可以在可见光照射下对V2O5纳米片和CDS QDS显示出优异的光电流。由于V2O5至V4 +的还原,V2O5纳米片可以通过抗坏血酸(AA)蚀刻,并且CDS / V2O5-纳米复合材料改性铟锡的光电流在AA蚀刻后显着降低。受到这种现象的启发,通过使用Cds / V2O5纳米复合材料作为光电材料和Aa包封的脂质体免疫胶囊作为标记,构建PEC免疫分析平台。用于检测CEA的线性检测范围为0.5pg ml(-1)至1ng ml(-1),检测极限为0.1pg ml(-1)。所提出的方法还显示出良好的选择性,优异的再现性和令人满意地恢复人血清样品中的CEA。我们认为,这项工作将为PEC分析的V2O5基础材料的未来发展奠定基础,并为PEC免疫测定的开发提供了合理的设计和实施。

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