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Flow microreactor synthesis of gold nanoshells and patchy particles

机译:流动微反应器合成金纳米壳和斑片状颗粒

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摘要

Silica@Au core-shell type composite particles are promising for biomedical applications due to their unique optical and chemical characteristics, although the problem lies in the synthetic processes. They are typically synthesized via batch type reactions including multiple steps, and the complexity in the synthetic process is an obstacle to practical applications. A robust and facile process is thus required. In the present study, we developed a flow synthetic process by applying a microreactor with a high mixing performance to silica@Au nanoshells and patchy particles. Following a concept of selective nucleation and subsequent growth of the gold on the core surface, we mixed a suspension of surface-modified silica particles containing gold ions with a reducing agent solution in the microreactor, and investigated the effects of the core particle size and the type of reducing agents on the composite particle synthesis. Through the investigation, we found that the ratio of the gold ion amount to the surface area of core particles is a key factor for obtaining uniform core-shell particles. In addition, the morphology of gold formed on the core surface was demonstrated to change from spherical nanoparticles to dendritic patches depending on the reducing ability of reducing agents. (C) 2016 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:尽管存在合成过程中的问题,但由于二氧化硅@金核壳型复合颗粒具有独特的光学和化学特性,因此有望用于生物医学应用。它们通常通过包括多个步骤的间歇式反应来合成,并且合成过程的复杂性是实际应用的障碍。因此,需要一种稳健而简便的方法。在本研究中,我们通过将具有高混合性能的微反应器应用于sil @ Au纳米壳和斑片状颗粒,开发了一种流动合成工艺。遵循选择性成核和随后在核表面上金生长的概念,我们在微反应器中混合了含金离子的表面改性二氧化硅颗粒与还原剂溶液的悬浮液,并研究了核粒径和颗粒尺寸的影响。类型的还原剂对复合颗粒的合成。通过研究,我们发现金离子量与核颗粒表面积的比率是获得均匀核-壳颗粒的关键因素。另外,根据还原剂的还原能力,证明了在核心表面上形成的金的形态从球形纳米颗粒变为树突状斑。 (C)2016日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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