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通过银离子辅助多向生长制备单分散介观星形金颗粒用于高灵敏度表面增强拉曼散射活性基底

Monodispersed mesoscopic star-shaped gold particles via silver-ion-assisted multi-directional growth for highly sensitive SERS-active substrates.

作者信息

Kim Sumin, Yoo Sunghoon, Nam Dong Hwan, Kim Hayoung, Hafner Jason H, Lee Seunghyun

机构信息

Department of Applied Chemistry, Hanyang University ERICA, Ansan, 15588, Republic of Korea.

Center for Bionano Intelligence Education and Research, Hanyang University ERICA, Ansan, 15588, Republic of Korea.

出版信息

Nano Converg. 2024 Jul 4;11(1):26. doi: 10.1186/s40580-024-00435-4.

Abstract

Surface-enhanced Raman scattering (SERS) exploits localized surface plasmon resonances in metallic nanostructures to significantly amplify Raman signals and perform ultrasensitive analyses. A critical factor for SERS-based analysis systems is the formation of numerous electromagnetic hot spots within the nanostructures, which represent regions with highly concentrated fields emerging from excited localized surface plasmons. These intense hotspot fields can amplify the Raman signal by several orders of magnitude, facilitating analyte detection at extremely low concentrations and highly sensitive molecular identification at the single-nanoparticle level. In this study, mesoscopic star-shaped gold particles (gold mesostars) were synthesized using a three-step seed-mediated growth approach coupled with the addition of silver ions. Our study confirms the successful synthesis of gold mesostars with numerous sharp tips via the multi-directional growth effect induced by the underpotential deposition of silver adatoms (AgUPD) onto the gold surfaces. The AgUPD process affects the nanocrystal growth kinetics of the noble metal and its morphological evolution, thereby leading to intricate nanostructures with high-index facets and protruding tips or branches. Mesoscopic gold particles with a distinctive star-like morphology featuring multiple sharp projections from the central core were synthesized by exploiting this phenomenon. Sharp tips of the gold mesostars facilitate intense localized electromagnetic fields, which result in strong SERS enhancements at the single-particle level. Electromagnetic fields can be further enhanced by interparticle hot spots in addition to the intraparticle local field enhancements when arranged in multilayered arrays on substrates, rendering these arrays as highly efficient SERS-active substrates with improved sensitivity. Evaluation using Raman-tagged analytes revealed a higher SERS signal intensity compared to that of individual mesostars because of interparticle hot spots enhancements. These substrates enabled analyte detection at a concentration of 10 M, demonstrating their remarkable sensitivity for trace analysis applications.

摘要

表面增强拉曼散射(SERS)利用金属纳米结构中的局域表面等离子体共振来显著放大拉曼信号并进行超灵敏分析。基于SERS的分析系统的一个关键因素是在纳米结构中形成大量电磁热点,这些热点代表了由激发的局域表面等离子体产生的高浓度场区域。这些强烈的热点场可以将拉曼信号放大几个数量级,便于在极低浓度下检测分析物,并在单纳米颗粒水平上进行高灵敏度的分子识别。在本研究中,采用三步种子介导生长法并添加银离子合成了介观星形金颗粒(金介星)。我们的研究证实,通过银原子欠电位沉积(AgUPD)在金表面上诱导的多向生长效应,成功合成了具有许多尖锐尖端的金介星。AgUPD过程影响贵金属的纳米晶体生长动力学及其形态演变,从而导致具有高指数晶面和突出尖端或分支的复杂纳米结构。利用这一现象合成了具有独特星形形态、从中心核有多个尖锐突起的介观金颗粒。金介星的尖锐尖端促进了强烈的局域电磁场,这导致在单颗粒水平上有很强的SERS增强。当在基底上排列成多层阵列时,除了颗粒内局部场增强外,颗粒间热点还可以进一步增强电磁场,使这些阵列成为具有更高灵敏度的高效SERS活性基底。使用拉曼标记分析物进行的评估显示,由于颗粒间热点增强,与单个介星相比,SERS信号强度更高。这些基底能够检测浓度为10 M的分析物,证明了它们在痕量分析应用中的显著灵敏度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/161a/11224182/123a56ce457e/40580_2024_435_Sch1_HTML.jpg

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