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Direct observation of liquid-like behavior of a single Au grain boundary

机译:直接观察的液状物行为单一的非盟晶界

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摘要

Behavior of matter at the nanoscale differs from that of the bulk due to confinement and surface effects. Here, we report a direct observation of liquid-like behavior of a single grain boundary formed by cold-welding Au nanoparticles, 40 nm in size, by mechanical manipulation in situ TEM. The grain boundary rotates almost freely due to the free surfaces and can rotate about 90 degrees. The grain boundary sustains more stress than the bulk, confirming a strong bonding between the nanoparticles. Moreover, this technique allows the measurement of the surface diffusion coefficient from experimental observations, which we compute for the Au nanoparticles. This methodology can be used for any metal, oxide, semiconductor or combination of them.
机译:物质在纳米尺度上不同于的行为大部分的监禁和表面效果。单个晶界的液状物行为由冷压焊Au纳米颗粒,40 nm大小,机械操纵原位透射电镜。由于自由几乎晶界旋转自由表面,可以旋转90度。晶界遭受更多的压力比散装,确认之间的结合纳米粒子。测量表面扩散系数的实验观察,我们计算了非盟纳米颗粒。方法可用于任何金属、氧化物、半导体或它们的组合。

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