4.8 Article

Inherent Control of Growth, Morphology, and Defect Formation in Germanium Nanowires

期刊

NANO LETTERS
卷 12, 期 11, 页码 5654-5663

出版社

AMER CHEMICAL SOC
DOI: 10.1021/nl302800u

关键词

Germanium; nanowire; supercritical fluid-solid-solid (SFSS) growth; AgxAu1-x alloy; twin; electron microscopy

资金

  1. Science Foundation Ireland [09/IN.1/I2602]
  2. Science Foundation Ireland (SFI) [09/IN.1/I2602] Funding Source: Science Foundation Ireland (SFI)

向作者/读者索取更多资源

The use of bimetallic alloy seeds for growing one-dimensional nanostructutes has recently gained momentum,among researchers. compositional flexibility of alloys provides the opportunity to manipulate the chemical environment, reaction kinetics, and thermodynamic behavior of nanowire growth, in both the eutectic and the subeutectic regimes. This Letter describes for the first time the role of AuxAg1-x alloy nanoparticles in defining the growth characteristics and crystal quality of solid-seeded Ge nanowires via a supercritical fluid growth process. The enhanced diffusivity of Ge in the alloy seeds, compared to pure Ag seeds, and slow interparticle diffusion of the alloy nanoparticles allows the realization of high-aspect ratio. nanowires with diameters below 10 nm, via a seeded bottom-up approach., Also detailed is the influence the alloyed seeds have on the crystalline features of nanowires:synthesized :from them, that is, planar defects. The distinctive. stacking fault energies, formation enthalpies, and diffusion chemistries of the nanocrystals result in different magnitudes of {111} stacking faults in the seed particles and the subsequent growth Of < 112 >-oriented nanowires with radial twins through a defect transfer mechanism, with the highest number twinned Ge nanowires obtained. using Ag0.75Au0.25 growth seeds. Employing alloy nanocrystals for intrinsically dictating the growth behavior and Crystallinity of nanowires could open up the possibility of engineering nanowires with tunable structural and physical properties.

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