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溴离子在金纳米棒成核生长中的作用。

The role of bromide ions in seeding growth of Au nanorods.

机构信息

Department of Chemistry, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.

出版信息

Langmuir. 2010 Jun 15;26(12):10271-6. doi: 10.1021/la100446q.

Abstract

We report our findings on the important role of bromide ions in the seeding growth process of Au nanorods. The seed-mediated process constitutes a well-developed method for synthesizing gold nanorods in high yield, which is facilitated by a micelle-forming surfactant, cetyltrimethylammonium bromide (CTA-Br). Despite the tremendous work in recent years, the growth mechanism of Au nanorods has not been fully understood. Contrary to the widely accepted mechanism of CTA(+) micelle-templated growth of Au nanorods, we have identified the critical role of bromide ions in the seeding growth of Au nanorods. We found that even when the micelle-forming agent (CTA(+)) concentration is below its critical micelle concentration (cmc), bromide ions added in the form of NaBr can successfully effect the growth of Au nanorods in good yield. By controlling the concentration of externally added bromide ions, the rod shape and dimensions of the resulting Au nanoparticles can be readily controlled in the presence of only a minimum amount of CTABr (as a steric stabilizer for nanorods). High-resolution TEM studies show that the as-formed nanorods are perfectly single crystalline, instead of penta-twinned ones, and are bound by {111} and {100} facets with a [110] direction as the elongation direction. A mechanism is proposed to account for the seeding growth of single crystalline Au nanorods. Overall, this work explicitly demonstrates that Br(-) indeed serves as an important shape-directing agent for gold nanorod formation in the seed-mediated process.

摘要

我们报告了溴离子在金纳米棒的种子生长过程中的重要作用的研究结果。种子介导的过程是一种高产率合成金纳米棒的成熟方法,它由形成胶束的表面活性剂十六烷基三甲基溴化铵(CTA-Br)促进。尽管近年来做了大量工作,但金纳米棒的生长机制仍未完全理解。与广泛接受的 CTA(+)胶束模板生长金纳米棒的机制相反,我们已经确定了溴离子在金纳米棒的种子生长中的关键作用。我们发现,即使胶束形成剂(CTA(+))的浓度低于其临界胶束浓度(cmc),以 NaBr 形式添加的溴离子也可以成功地以高收率促进金纳米棒的生长。通过控制外加溴离子的浓度,可以在仅存在最小量的 CTABr(作为纳米棒的空间稳定剂)的情况下,轻松控制所得 Au 纳米颗粒的棒形状和尺寸。高分辨率 TEM 研究表明,形成的纳米棒是完美的单晶,而不是五孪晶,并且由{111}和{100}面以及[110]方向作为伸长方向结合。提出了一种机制来解释单晶金纳米棒的种子生长。总的来说,这项工作明确表明,Br(-)确实在种子介导的过程中作为金纳米棒形成的重要形状导向剂。

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