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首页> 外文期刊>RSC Advances >Kinetic impact of Pt seed morphology on the highly controlled growth of Ni-based nanostructures
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Kinetic impact of Pt seed morphology on the highly controlled growth of Ni-based nanostructures

机译:Pt种子形态对Ni基纳米结构高度受控生长的动力学影响

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摘要

A Pt seed-mediated growth method for the synthesis of Ni/NiO and Ni/Ni(OH)(2) nanocomposites has been designed so that the morphology and composition of the final materials can be kinetically tailored by a rational choice of the type of seed. Spherical and dendritic Pt nanoparticles provide rather different architectures depending on the different catalytic activity they can exert. Thus, the Pt nanoparticle's initial morphology establishes the conditions for the initial nickel deposition and consequently determines the subsequent autocatalytic growth of the magnetic nanocomposite. Pt seed morphology and reaction conditions reveal the autocatalytic nickel deposition kinetics as a critical factor in the tunability of morphology and composition of nickel-based nanostructures, offering a great opportunity to modulate the final properties of these materials.
机译:设计了一种用于合成Ni / NiO和Ni / Ni(OH)(2)纳米复合材料的Pt种子介导的生长方法,从而可以通过合理选择硅橡胶的类型来动力学调整最终材料的形态和组成。种子。球形和树枝状的Pt纳米颗粒根据其可发挥的不同催化活性提供了完全不同的结构。因此,Pt纳米颗粒的初始形态为初始镍沉积建立了条件,并因此确定了磁性纳米复合材料的后续自催化生长。 Pt种子的形貌和反应条件表明,自催化镍沉积动力学是镍基纳米结构的形貌和组成可调性的关键因素,为调节这些材料的最终性能提供了绝佳机会。

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