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纳米尺度对相分离的影响。

Nanoscale Effects on Phase Separation.

机构信息

Dipartimento di Fisica, Università di Genova , Via Dodecaneso 33, Genova, I16146, Italy.

Dipartimento di Chimica e Chimica Industriale, Università di Genova , Via Dodecaneso 31, Genova, I16146, Italy.

出版信息

Nano Lett. 2017 Sep 13;17(9):5394-5401. doi: 10.1021/acs.nanolett.7b01994. Epub 2017 Aug 15.

Abstract

Classical nucleation theory predicts that a binary system which is immiscible in the bulk should become miscible at the nanoscale when lowering its size below a critical size. Here we tackle the problem of miscibility in nanoalloys with a combination of ab initio and atomistic calculations, developing a statistical-mechanics approach for the free energy cost of forming phase-separated aggregates. We apply it to the controversial case of AuCo nanoalloys. AuCo is immiscible in the bulk, but a rich variety of nanoparticle configurations, both phase-separated and intermixed, have been obtained experimentally. Our calculations strongly point to the permanence of an equilibrium miscibility gap down to the nanoscale and to the nonexistence of a critical size below which phase separation is impossible. We show that this is due to nanoscale effects of general character, caused by the existence of preferred nucleation sites in nanoparticles, which lower the free-energy cost for phase separation with respect to bulk systems.

摘要

经典成核理论预测,当体系的尺寸降低到临界尺寸以下时,在大块中不可混溶的二元体系应该在纳米尺度上变得混溶。在这里,我们通过从头算和原子计算相结合的方法解决纳米合金的混溶性问题,为形成相分离聚集体的自由能成本开发了一种统计力学方法。我们将其应用于有争议的 AuCo 纳米合金的案例。AuCo 在大块中是不混溶的,但实验中已经获得了丰富的纳米颗粒构型,包括相分离和混合。我们的计算强烈指出,纳米尺度下的平衡混溶性间隙仍然存在,而且不存在一个临界尺寸,低于该尺寸就不可能发生相分离。我们表明,这是由于纳米颗粒中存在优先成核位点的普遍特征的纳米尺度效应所致,这降低了相对于体相体系的相分离的自由能成本。

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