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采用分子动力学模拟技术,研究了原子个数N=1088的Au纳米团簇的凝固过程的微观结构、热力学和动力学参数的变化.模型采用的是Johnson的EAM作用势.模拟结果表明:液态团簇在两种不同的冷速下冷却得到两种不同的固态组织:晶体团簇和非晶团簇.当冷速为1.5625×1013K/s时,能量随温度的变化呈线性关系,且偶分布函数的第二峰发生劈裂,体系形成非晶态;当冷速为1.5625×1012K/s时,能量-温度曲线上出现拐点,且偶分布函数显示明显的晶体峰特征,说明体系形成了晶体.另外,计算了不同冷速下原子的平均平方位移随温度的变化,发现原子位置的重排对冷却速度非常敏感.当冷速较快时,原子只在很小的范围内运动;而结晶过程是原子不断扩散重新排列的过程.

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