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Controlling the morphology of multi-branched gold nanoparticles

机译:控制多支金纳米颗粒的形态

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We demonstrate a simple and versatile way to achieve high yield synthesis of shape- and size-controlled multi-branched gold nanoparticles (MBNPs). Control over the shape of the MBNPs was achieved by varying the ratio of gold to the mild reducing agent ascorbic acid, using a seed-mediated growth approach. Higher ascorbate concentrations resulted in the smoothing of branches, leading to the yield of relatively more isotropic particles. Furthermore, we found that using much higher silver concentrations in the growth solution resulted in the formation of rod-shaped micro-features together with MBNPs; we postulate them to be cetyltrimethyl ammonium silver bromide crystals. The as-prepared MBNPs show interesting tunable optical properties that are strongly influenced by the particle shape. The results are discussed in terms of plasmon coupling between the core and branches of the MBNPs.
机译:我们演示了一种简单且通用的方法,可实现形状和大小受控的多支金纳米颗粒(MBNP)的高产率合成。通过使用种子介导的生长方法,通过改变金与温和的还原剂抗坏血酸的比例,可以控制MBNP的形状。较高的抗坏血酸盐浓度导致分支的平滑,从而导致产生相对较多各向同性的颗粒。此外,我们发现在生长溶液中使用高得多的银浓度会导致与MBNP一起形成棒状微特征。我们假定它们是十六烷基三甲基溴化银铵晶体。所制备的MBNP表现出令人感兴趣的可调光学特性,该特性受到粒子形状的强烈影响。根据MBNPs的核心和分支之间的等离激元耦合来讨论结果。

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