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低维 Cu-Zr 非晶体系中原子结构的尺寸效应。

Size effect on atomic structure in low-dimensional Cu-Zr amorphous systems.

机构信息

International Center for New-Structured Materials (ICNSM), Laboratory of New-Structured Materials, State Key Laboratory of Silicon Materials, and School of Materials Science and Engineering, Zhejiang University, Hangzhou, 310027, People's Republic of China.

School of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou, 310014, People's Republic of China.

出版信息

Sci Rep. 2017 Aug 4;7(1):7291. doi: 10.1038/s41598-017-07708-5.

Abstract

The size effect on atomic structure of a CuZr amorphous system, including zero-dimensional small-size amorphous particles (SSAPs) and two-dimensional small-size amorphous films (SSAFs) together with bulk sample was investigated by molecular dynamics simulations. We revealed that sample size strongly affects local atomic structure in both CuZr SSAPs and SSAFs, which are composed of core and shell (surface) components. Compared with core component, the shell component of SSAPs has lower average coordination number and average bond length, higher degree of ordering, and lower packing density due to the segregation of Cu atoms on the shell of CuZr SSAPs. These atomic structure differences in SSAPs with various sizes result in different glass transition temperatures, in which the glass transition temperature for the shell component is found to be 577 K, which is much lower than 910 K for the core component. We further extended the size effect on the structure and glasses transition temperature to CuZr SSAFs, and revealed that the T decreases when SSAFs becomes thinner due to the following factors: different dynamic motion (mean square displacement), different density of core and surface and Cu segregation on the surface of SSAFs. The obtained results here are different from the results for the size effect on atomic structure of nanometer-sized crystalline metallic alloys.

摘要

采用分子动力学模拟研究了 CuZr 非晶体系的原子结构的尺寸效应,包括零维小尺寸非晶颗粒(SSAPs)和二维小尺寸非晶薄膜(SSAFs)以及体相样品。结果表明,尺寸强烈影响了 CuZr SSAPs 和 SSAFs 的局部原子结构,它们由核和壳(表面)组成。与核组分相比,由于 Cu 原子在 CuZr SSAPs 的壳层上的偏析,SSAPs 的壳层组分具有较低的平均配位数和平均键长、较高的有序度和较低的堆积密度。这些具有不同尺寸的 SSAPs 的原子结构差异导致不同的玻璃化转变温度,其中壳层组分的玻璃化转变温度为 577 K,远低于核组分的 910 K。我们进一步将尺寸效应对结构和玻璃化转变温度的影响扩展到 CuZr SSAFs,结果表明,由于以下因素,当 SSAFs 变窄时,T 降低:核心和表面的不同动态运动(均方根位移)、不同的密度和 Cu 在 SSAFs 表面的偏析。这里得到的结果与纳米尺寸晶态金属合金的原子结构的尺寸效应的结果不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abad/5544703/9c48ead39d99/41598_2017_7708_Fig1_HTML.jpg

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