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Controlling the nucleation and growth of ultrasmall metal nanoclusters with MoS2 grain boundaries

机译:控制的成核和增长超金属制备二硫化钼粮食边界

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摘要

The stabilization of supported nanoclusters is critical for different applications, including catalysis and plasmonics. Herein we investigate the impact of MoS2 grain boundaries (GBs) on the nucleation and growth of Pt NCs. The optimum atomic structure of the metal clusters is obtained using an adaptive genetic algorithm that employs a hybrid approach based on atomistic force fields and density functional theory. Our findings show that GBs stabilize the NCs up to a cluster size of nearly ten atoms, and with larger clusters having a similar binding to the pristine system. Notably, Pt monomers are found to be attracted to GB cores achieving 60% more stabilization compared to the pristine surface. Furthermore, we show that the nucleation and growth of the metal seeds are facile with low kinetic barriers, which are of similar magnitude to the diffusion barriers of metals on the pristine surface. The findings highlight the need to engineer ultrasmall NCs to take advantage of enhanced stabilization imparted by the GB region, particularly to circumvent sintering behavior for high-temperature applications.
机译:稳定支持的发光机制不同的应用程序的关键,包括催化和等离子。二硫化钼晶界的影响(GBs)Pt nc的成核和增长。原子结构的金属集群获得使用一种自适应遗传算法采用基于原子的混合方法力场和密度泛函理论。研究结果表明,GBs稳定nc起来集群规模近十原子,和大集群有一个类似的绑定到原始系统。GB吸引核心达到60%以上稳定而原始表面。此外,我们表明,该成核较低的金属种子是肤浅的增长运动障碍,类似的大小金属的扩散障碍原始表面。工程师超微nc利用增强稳定GB的的地区,尤其是绕过烧结行为高温应用。

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