佩多:嘘
阴极
材料科学
光电子学
碲化镉光电
凝血酶生成
纳米技术
适体
凝血酶
化学工程
化学
血小板
免疫学
生物
遗传学
物理化学
工程类
图层(电子)
作者
Lei Qin,Fangyu Gong,Zi Ma,Kai Li,Linzheng Ma,Wei Chen
标识
DOI:10.1021/acsanm.5c00888
摘要
Self-powered photoelectrochemical (PEC) sensing platforms, which integrate a photoanode with a sensing cathode, have emerged as transformative strategies for analyzing biological samples due to their robust photocurrent responses and outstanding anti-interference capabilities. Building on this concept, a self-powered PEC aptasensor was designed to achieve the highly accurate and selective detection of thrombin (TB). The photoanode was constructed by sequentially modifying a bare indium tin oxide (ITO) electrode with titanium dioxide (TiO2) powder, aqueous cadmium telluride quantum dots (CdTe QDs), and poly(3,4-ethylenedioxythiophene) (PEDOT), resulting in a cosensitized TiO2/CdTe/PEDOT structure. The sensing cathode was prepared by electrodepositing reduced graphene oxide (RGO) onto an ITO substrate, followed by the immobilization of a TB-specific aptamer on the ITO/RGO surface. This spatial separation of the photoanode and cathode offers two key advantages: enhanced photoresponse and stable photocurrent compared to traditional cathodic PEC systems, as well as excellent sensitivity and selectivity with strong resistance to interference from reductive species and photoexcitation of the cathode. This self-powered PEC aptasensor demonstrates a highly reliable and efficient platform for target analyte detection, showcasing a superior performance and significant potential for diverse applications in biomolecular sensing.
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