光电效应
检出限
电化学
催化作用
贵金属
化学
降钙素原
材料科学
分析化学(期刊)
电极
色谱法
光电子学
物理化学
生物
生物化学
免疫学
败血症
作者
Yan Qi,Biao Wang,Bawurejiang Duolihong,Xin Ma,Xiaohong Xia
标识
DOI:10.1016/j.jallcom.2023.171143
摘要
In recent years, noble metal catalysts have been extensively studied in terms of hydrogen evolution reaction (HER), but there has been less research on the construction of immunosensor based on the catalytic signal amplification strategy of noble metal. Based on the excellent HER and photoelectric performance of AuPt nanoslices modified black phosphorus nanoflakes (AuPt/BP) in neutral medium, we reported a dual-signal electrochemical immunosensor, which uses AuPt/BP as signal amplification label for the detection of procalcitonin (PCT). Due to the charge transfer between AuPt and BP, AuPt/BP has better HER activity and photoelectric performance than single AuPt or BP, which realized the construction of dual-signal electrochemical immunosensors and the improvement of detection sensitivity. In addition, the presence of BP makes AuPt/BP has better dispersion and larger surface area, which can load more secondary antibody (Ab2) and realize the signal amplification of the immunosensor. The linear ranges of PCT detection based on HER and photoelectric signals are 1.96 fg mL−1 ∼ 0.196 ng mL−1 and 1.96 fg mL−1 ∼ 19.6 pg mL−1, and the detection limits of PCT with HER and photoelectric signals are 0.88 fg mL−1 and 0.99 fg mL−1.
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