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金三角纳米棱晶上银的可控生长:用于癌症生物标志物超灵敏检测的增强表面拉曼散射

Controlled growth of silver on gold triangular nanoprisms: Improved surface enhanced Raman scattering for ultrasensitive detection of cancer biomarker.

作者信息

Wu Gao-Feng, Zhu Jian, Weng Guo-Jun, Li Jian-Jun, Liu Yu-Ning, Zhao Jun-Wu

机构信息

The Key Laboratory of Biomedical Information Engineering of Ministry of Education, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an 710049, People's Republic of China.

The Key Laboratory of Biomedical Information Engineering of Ministry of Education, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an 710049, People's Republic of China.

出版信息

J Colloid Interface Sci. 2025 Apr;683(Pt 2):667-677. doi: 10.1016/j.jcis.2024.12.210. Epub 2024 Dec 27.

DOI:10.1016/j.jcis.2024.12.210
PMID:39742747
Abstract

The precise design and synthesis of Au and Ag composite nanomaterials can provide them with richer plasmonic modes, resulting in enhanced optical properties. Here, a novel strategy was demonstrated to control the selective deposition of Ag at different positions of Au triangular nanoprisms (Au TNPs). 1,4-benzenedithiol (BDT) was selectively absorbed in different positions of Au TNPs which made Ag selectively deposited on Au TNPs. A series of Ag islands-Au TNPs including 3AgNPs islands-Au@Ag TNPs, 3AgNPs islands-Au TNPs, 2AgNPs islands-Au TNPs and 1AgNPs island-Au TNPs were obtained. We found that Surface enhanced Raman scattering (SERS) activity was closely associated with the position of Ag deposition under the same volume of AgNO. It has strongest SERS activity when Ag deposit on the surface, edges and corners of Au TNPs which corresponding to 3AgNPs islands-Au@Ag TNPs with a high enhancement factor of 5.50 × 10. Raman reporter molecules were embedded between Au core, Ag shell and Ag islands which enhanced the stability, making them ideal candidates for Raman tag-based applications. We used it as SERS probes to realize the ultra-sensitive detection of Cyfra21-1, with a low limit of detection of 2.84 × 10 g/L and a wide linear range of 1.00 × 10-1.00 × 10 g/L.

摘要

金和银复合纳米材料的精确设计与合成能够赋予它们更丰富的等离子体模式,从而增强光学性能。在此,展示了一种新颖的策略来控制银在金三角形纳米棱镜(Au TNPs)不同位置的选择性沉积。1,4-苯二硫醇(BDT)被选择性地吸附在Au TNPs的不同位置,这使得银选择性地沉积在Au TNPs上。获得了一系列银岛-Au TNPs,包括3AgNPs岛-Au@Ag TNPs、3AgNPs岛-Au TNPs、2AgNPs岛-Au TNPs和1AgNPs岛-Au TNPs。我们发现,在相同体积的硝酸银条件下,表面增强拉曼散射(SERS)活性与银的沉积位置密切相关。当银沉积在Au TNPs的表面、边缘和角落时,其具有最强的SERS活性,对应于增强因子高达5.50×10的3AgNPs岛-Au@Ag TNPs。拉曼报告分子嵌入在金核、银壳和银岛之间,增强了稳定性,使其成为基于拉曼标签应用的理想候选物。我们将其用作SERS探针来实现对细胞角蛋白19片段21-1(Cyfra21-1)的超灵敏检测,检测下限低至2.84×10 g/L,线性范围宽达1.00×10 - 1.00×10 g/L。

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