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Turkevich in New Robes: Key Questions Answered for the Most Common Gold Nanoparticle Synthesis

机译:Turkevich身着新袍:最常见的金纳米粒子合成中的关键问题

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This contribution provides a comprehensive mechanistic picture of the gold nanoparticle synthesis by citrate reduction of HAuCl4, known as Turkevich method, by addressing five key questions. The synthesis leads to monodisperse final particles as a result of a seed-mediated growth mechanism. In the initial phase of the synthesis, seed particles are formed onto which the residual gold is distributed during the course of reaction. It is shown that this mechanism is a fortunate coincidence created by a favorable interplay of several chemical and physicochemical processes which initiate but also terminate the formation of seed particles and prevent the formation of further particles at later stages of reaction. Since no further particles are formed after seed particle formation, the number of seeds defines the final total particle number and therefore the final size. The gained understanding allows illustrating the influence of reaction conditions on the growth process and thus the final size distribution.
机译:该贡献通过解决五个关键问题,提供了柠檬酸还原HAuCl4的金纳米颗粒合成的综合机理图,称为Turkevich方法。由于种子介导的生长机理,合成导致最终颗粒单分散。在合成的初始阶段,形成了种子颗粒,在反应过程中残留的金分布在其上。结果表明,这种机理是一种幸运的巧合,它是由几种化学和物理化学过程的良好相互作用所产生的,这些过程开始但也终止了种子颗粒的形成,并阻止了反应后期的其他颗粒的形成。由于在种子粒子形成之后没有其他粒子形成,因此种子的数量决定了最终的总粒子数,因此也决定了最终的尺寸。所获得的理解可以说明反应条件对生长过程的影响,以及最终尺寸分布的影响。

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