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痕量银在金纳米棒合成中的作用。

The role of trace Ag in the synthesis of Au nanorods.

作者信息

Moreau Liane M, Jones Matthew R, Roth Eric W, Wu Jinsong, Kewalramani Sumit, O'Brien Matthew N, Chen Bor-Rong, Mirkin Chad A, Bedzyk Michael J

机构信息

Department of Materials Science and Engineering, Northwestern University, Evanston, IL 60208, USA.

出版信息

Nanoscale. 2019 Jun 20;11(24):11744-11754. doi: 10.1039/c9nr03246k.

Abstract

One of the more useful syntheses of single crystalline, uniform Au nanorods from Au spherical seeds relies on the addition of trace Ag ions, yet the role that Ag+ plays has remained both elusive and controversial, due in part to lack of knowledge of how the Ag distribution in the nanorod evolves over time. In this work, we fill in this knowledge gap by correlating the spatial distribution of Ag within Au nanorods with nanorod anisotropic growth through time-course X-ray absorption spectroscopy (XAFS)-derived atomic-level elemental coordination paired with electron microscopy for nanoscale morphological analysis. Using this method, a plausible pathway for the conversion of spherical seeds into Au nanorods is proposed. Evidence shows that the nanorod anisotropic growth is directly related to the Ag surface coverage. Anisotropy is induced early in the reaction when Ag first deposits onto the nanoparticle surface, but growth occurs more isotropically as the reaction progresses and Ag diffuses into the nanorod bulk. The results of this investigation and methods employed should be extendable to many anisotropic nanoparticle syntheses that make use of trace elemental species as shape-control additives.

摘要

一种较为有用的从金球形种子合成单晶、均匀金纳米棒的方法依赖于添加痕量银离子,然而银离子所起的作用一直难以捉摸且存在争议,部分原因是缺乏对纳米棒中银分布如何随时间演变的了解。在这项工作中,我们通过将金纳米棒内银的空间分布与通过时间分辨X射线吸收光谱(XAFS)得出的原子级元素配位的纳米棒各向异性生长相关联,并结合电子显微镜进行纳米级形态分析,填补了这一知识空白。使用这种方法,我们提出了一个将球形种子转化为金纳米棒的合理途径。证据表明,纳米棒的各向异性生长与银的表面覆盖率直接相关。当银首次沉积在纳米颗粒表面时,反应早期就会诱导各向异性,但随着反应进行和银扩散到纳米棒主体中,生长会更趋于各向同性。本研究的结果和所采用的方法应可扩展到许多利用痕量元素作为形状控制添加剂的各向异性纳米颗粒合成中。

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