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Morphology-controlled synthesis of silver nanoparticles on the silicon substrate by a facile silver mirror reaction

机译:通过简便的银镜反应在硅衬底上形态控制合成银纳米颗粒

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The Ag nanoparticles (Ag-NPs) with different morphology were quickly deposited on p-type Si substrate by a facile silver mirror reaction without capping agents and morphology driving seeds at room temperature. By controlling the concentrations of [Ag(NH3)2]+ and reducing agent (glucose), short rod and quasi-round Ag-NPs were produced on Si substrate. The results show that the shape of the Ag-NPs was defined by [Ag(NH3)2]+ concentration. The concentration of glucose affected the coverage fraction instead of shape of Ag-NPs. Under the high concentrations of [Ag(NH3)2]+, anisotropic crystal structure of short rod Ag-NPs were ascribed to total energy minimization. The high glucose concentration led to agglomeration of particles. Different nanoporous structures on Si substrate etched by using Ag-NPs enable control over its properties and are useful for the solar cells applications.
机译:通过简便的银镜反应,将具有不同形态的Ag纳米粒子(Ag-NPs)迅速沉积在p型Si衬底上,而没有封端剂和形态在室温下驱动种子。通过控制[Ag(NH3)2] +和还原剂(葡萄糖)的浓度,在Si衬底上生产了短棒和准圆形Ag-NP。结果表明,Ag-NPs的形状由[Ag(NH3)2] +浓度定义。葡萄糖浓度影响覆盖率而不是Ag-NP的形状。在高浓度的[Ag(NH3)2] +下,短棒Ag-NPs的各向异性晶体结构被归因于总能量的最小化。高葡萄糖浓度导致颗粒附聚。通过使用Ag-NP蚀刻在Si衬底上形成的不同纳米孔结构,可以控制其性能,可用于太阳能电池应用。

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