首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Iodide-Induced Organothiol Desorption and Photochemical Reaction, Gold Nanoparticle (AuNP) Fusion, and SERS Signal Reduction in Organothiol-Containing AuNP Aggregates
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Iodide-Induced Organothiol Desorption and Photochemical Reaction, Gold Nanoparticle (AuNP) Fusion, and SERS Signal Reduction in Organothiol-Containing AuNP Aggregates

机译:碘化物诱导的有机硫醇解吸和光化学反应,金纳米粒子(AuNP)融合和SERS信号减少包含有机硫醇的AuNP聚集体中。

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Gold nanoparticles (AuNPs) have been used extensively as surface-enhanced Raman spectroscopic (SERS) substrates for their large SERS enhancements and widely believed chemical stability. Presented is the finding that iodide can rapidly reduce the SERS intensity of the ligands, including organothiols adsorbed on plasmonic AuNPs through both iodide-induced ligand desorption and AuNP fusion. The organothiols trapped inside the fused AuNPs have negligible SERS activities. Multiple photochemical processes were involved when organothiol-containing AuNP aggregates were treated with KI under photoillumination. The photocatalytically produced I-3(-) reacts with both organothiol and AuNPs. Chloride and bromide also induce partial organothiol displacement and the fusion of the as-synthesized AuNPs, but neither of the two halides has detectable effects on the morphology and Raman signals of the organothiol-containing AuNP aggregates. The insight provided in this work should be important for the understanding of interfacial interactions of plasmonic AuNPs and their SERS applications.
机译:金纳米颗粒(AuNPs)已被广泛用作表面增强拉曼光谱(SERS)底物,因为它们具有较大的SERS增强作用和广泛的化学稳定性。提出的发现是碘化物可通过碘化物诱导的配体解吸和AuNP融合而迅速降低配体的SERS强度,包括吸附在等离子体AuNPs上的有机硫醇。被困在融合的AuNP中的有机硫醇的SERS活性可忽略不计。当在光照下用KI处理含有机硫醇的AuNP聚集体时,涉及多个光化学过程。光催化产生的I-3(-)与有机硫醇和AuNPs反应。氯化物和溴化物也诱导部分有机硫醇置换和合成的AuNP融合,但两种卤化物均未检测到含有机硫醇AuNP聚集体的形态和拉曼信号。这项工作中提供的见解对于理解等离激元AuNP及其SERS应用之间的界面相互作用应该是重要的。

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