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Size- and shape-dependent phase diagram of In-Sb nano-alloys

机译:大小,shape-dependent对某人的相图nano-alloys

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Nano-scale alloy systems with at least one dimension below 100 nm have different phase stabilities than those observed in the macro-scale systems due to a large surface to volume ratio. We have used the semi-empirical thermodynamic modelling, i. e. the CALPHAD method, to predict the phase equilibria of the In-Sb nano-scale systems as a function of size and shape. To calculate the size-and shape-dependent phase diagram of the In-Sb system, we have added size-dependent surface energy terms to the Gibbs energy expressions in the In-Sb thermodynamic database. We estimated the surface energies of the solution phases and of the InSb intermetallic phase using the Butler equation and DFT calculations, respectively. A melting point and eutectic point depression were observed for both nanoparticle and nanowire systems. The eutectic composition on the In-rich and Sb-rich sides of the phase diagram shifted towards higher solubility. We believe that the phase diagram of In-Sb nano-alloys is useful for an increased understanding of the growth parameters and mechanisms of InSb nanostructures.
机译:纳米合金系统至少有一个维度低于100海里有不同的阶段比观察到的稳定性大规模的系统由于巨大的表面体积比。热力学模型,即CALPHAD方法,预测的相平衡对某人纳米系统尺寸的函数和形状。对某人的shape-dependent相图系统中,我们添加了尺度依赖的表面能源的吉布斯能量表达式对某人热力学数据库。表面能量和解决方案的阶段巴特勒的InSb金属间化合物阶段使用分别和DFT计算方程。熔点和共晶点抑郁观察纳米颗粒和纳米线系统。两侧Sb-rich相图发生了变化向更高的溶解度。相图的对某人nano-alloys是有用的增加对增长的理解参数和InSb纳米结构的机制。

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