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Ag 纳米粒子原位修饰在 TiCT 上,用于β-人绒毛膜促性腺激素的具有优异 SERS 和 EIS 免疫分析性能。

Ag nanoparticle in situ decorated on TiCT with excellent SERS and EIS immunoassay performance for beta-human chorionic gonadotropin.

机构信息

Institute for Innovative Materials and Energy, Faculty of Chemistry and Chemical Engineering, Yangzhou University, Jiangsu Province, Yangzhou City, 225009, China.

Testing Centre, Yangzhou University, Yangzhou City, Jiangsu, 225009, China.

出版信息

Mikrochim Acta. 2022 Aug 25;189(9):348. doi: 10.1007/s00604-022-05426-y.

Abstract

Two-dimensional transition metal carbides, nitrides, and carbonitrides (MXene), with excellent optical and electrical properties, are promising substrates for surface-enhanced Raman scattering (SERS) and electrochemical sensors. Therefore, a unique 3D-decorated structure containing silver (Ag) nanoparticles and TiCT was designed as the substrates of SERS and electrochemical impedance spectroscopy (EIS) immunosensors. The Ag/TiCT composite significantly increases Raman intensity, which is attributed to the synergistic effect of TiCT and Ag nanoparticles. Based on the SERS performance of the Ag/TiCT composite, the magnetic properties of FeO and the specificity of antigen-antibody, a sandwich-structured SERS immunosensor is constructed, which can effectively detect trace amounts of beta-human chorionic gonadotropin (β-hCG). The SERS immunosensor exhibits a wide linear range of 5.0 × 10-1.0 mIU mL, and a low detection limit of 9.0 × 10 mIU mL. Meanwhile, the Ag/TiCT-based EIS immunosensor is constructed for the portable detection of β-hCG, which exhibits a wide linear range of 5.0 × 10-1.0 × 10 mIU mL, a low detection limit of 9.5 × 10 mIU mL. Moreover, two immunosensors can be used to detect actual serum samples with satisfactory recovery (98.5-102.2%). This work could guide the design of low-cost, sensitive, flexible, and portable biosensors. The SERS and EIS substrates composited with TiCT and Ag nanoparticles enable excellent performance for detecting β-hCG.

摘要

二维过渡金属碳化物、氮化物和碳氮化物(MXene)具有优异的光学和电学性能,是表面增强拉曼散射(SERS)和电化学传感器的理想基底。因此,设计了一种独特的 3D 装饰结构,包含银(Ag)纳米粒子和 TiCT,作为 SERS 和电化学阻抗谱(EIS)免疫传感器的基底。Ag/TiCT 复合材料显著提高了拉曼强度,这归因于 TiCT 和 Ag 纳米粒子的协同效应。基于 Ag/TiCT 复合材料的 SERS 性能、FeO 的磁性和抗原-抗体的特异性,构建了三明治结构的 SERS 免疫传感器,可有效检测痕量的人绒毛膜促性腺激素-β(β-hCG)。SERS 免疫传感器具有 5.0×10-1.0 mIU mL 的宽线性范围和 9.0×10 mIU mL 的低检测限。同时,构建了基于 Ag/TiCT 的 EIS 免疫传感器,用于便携式检测 β-hCG,其线性范围为 5.0×10-1.0×10 mIU mL,检测限为 9.5×10 mIU mL。此外,两种免疫传感器均可用于检测实际血清样品,回收率令人满意(98.5-102.2%)。这项工作可以指导设计低成本、灵敏、灵活和便携式的生物传感器。TiCT 和 Ag 纳米粒子复合的 SERS 和 EIS 基底可实现对β-hCG 的优异检测性能。

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