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单颗粒研究:汞齐化对各向异性金纳米棒形态和光谱变化的影响。

Single-particle study: effects of mercury amalgamation on morphological and spectral changes in anisotropic gold nanorods.

机构信息

Advanced Nano-Bio-Imaging and Spectroscopy Laboratory, Department of Chemistry, University of Ulsan, 93 Daehak-ro, Nam-gu, Ulsan 44610, Republic of Korea.

Energy Harvest-Storage Research Center (EHSRC), University of Ulsan, 93 Daehak-ro, Nam-gu, Ulsan, South Korea.

出版信息

Analyst. 2022 Mar 14;147(6):1066-1070. doi: 10.1039/d2an00104g.

Abstract

This study investigated the amalgamation of gold nanorods (AuNRs) exposed to Hg(II) solution and its effects on structural and spectral changes in single AuNRs using scanning electron microscopy and total internal reflection scattering microscopy. First, Hg adsorption on AuNR surfaces formed AuNRs@Hg core-shell structures. Afterwards, they transformed to AuNRs@AuHg alloy shell structures in air due to the slow inward diffusion of Hg over time. The aspect ratio (AR) of the AuNRs@AuHg formed by the amalgamation was significantly decreased compared to that of bare AuNRs. Furthermore, the Hg coating on AuNRs induced a dramatic blue shift of the localized surface plasmon resonance (LSPR) peak and linewidth broadening, followed by a red shift and linewidth narrowing of the LSPR peak due to inward diffusion of Hg into the AuNR core. Finally, we investigated the effects of oxygen plasma treatment on the structural changes of AuNRs@AuHg and found that their AR was a decreasing function of the plasma treatment time. More notably, a major structural change was observed 5 min after the plasma treatment. Therefore, fundamental information on the relationship among amalgamation process, plasma treatment time, structural change, and LSPR peak and linewidth is provided at the single-particle level.

摘要

本研究通过扫描电子显微镜和全内反射散射显微镜,研究了暴露于 Hg(II)溶液中的金纳米棒(AuNRs)的融合及其对单个 AuNRs 结构和光谱变化的影响。首先,Hg 在 AuNR 表面的吸附形成了 AuNRs@Hg 核壳结构。随后,由于 Hg 的缓慢向内扩散,它们在空气中转变为 AuNRs@AuHg 合金壳结构。与裸 AuNRs 相比,由融合形成的 AuNRs@AuHg 的纵横比(AR)显著降低。此外,Hg 对 AuNRs 的覆盖导致局域表面等离子体共振(LSPR)峰的蓝移和线宽变宽,随后由于 Hg 向内扩散到 AuNR 核中,LSPR 峰发生红移和线宽变窄。最后,我们研究了氧等离子体处理对 AuNRs@AuHg 结构变化的影响,发现其 AR 是等离子体处理时间的递减函数。更值得注意的是,在等离子体处理 5 分钟后观察到主要的结构变化。因此,在单粒子水平上提供了关于融合过程、等离子体处理时间、结构变化以及 LSPR 峰和线宽之间关系的基本信息。

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