首页> 外文期刊>Journal of Electron Microscopy >In situ HREM study on the structural instability of isolated nanometre-sized alloy particles in the Sn-Bi system.
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In situ HREM study on the structural instability of isolated nanometre-sized alloy particles in the Sn-Bi system.

机译:原位HREM研究Sn-Bi系统中分离的纳米级合金颗粒的结构不稳定性。

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摘要

The structural instability of isolated nm-sized alloy particles has been investigated by in situ transmission electron microscopy, using particles in the Sn-Bi system. In a pure tin (Sn) particle, no structural fluctuation was induced under electron-beam irradiation. In a tin-rich solid solution particle, an orientational fluctuation took place at a rate of approximately once per 1-3 s. In a high concentration alloy particle with a two-phase microstructure, a structural fluctuation occurred at a rate of a few hertz. Namely, the fluctuation became more frequent with increasing bismuth (Bi) concentration, no matter whether it consists of a single phase or multiple phases. A good parallelism can be found between this fluctuation enhancement with bismuth concentration and the fact that the free-energy difference between a solid particle and the corresponding liquid one decreases continuously with bismuth concentration and approaches a value close to zero at the eutectic composition. These results lead to aview that a nm-sized solid particle exhibits a structural instability under electron-beam irradiation when the free-energy difference between a solid particle and the corresponding liquid one is reduced to a value close to zero.
机译:使用Sn-Bi系统中的粒子,通过原位透射电子显微镜研究了分离出的纳米尺寸合金粒子的结构不稳定性。在纯锡(Sn)颗粒中,在电子束照射下不会引起结构波动。在富含锡的固溶体颗粒中,取向波动的发生速率约为1-3秒一次。在具有两相微结构的高浓度合金颗粒中,以几赫兹的速率发生结构波动。即,无论铋是单相还是多相,随着Bi(Bi)浓度的增加,波动变得更加频繁。在这种随铋浓度增加的波动与固体颗粒和相应的液体之间的自由能差随铋浓度连续减小并在低共熔组成下接近于零的值之间可以发现良好的平行度。这些结果导致了这样的观点,即当固体颗粒和相应的液体之一之间的自由能差减小到接近零的值时,纳米尺寸的固体颗粒在电子束照射下显示出结构不稳定性。

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