Size effect on melting point is closely related with the surface energy of nanoparticles, since the increased surface/volume ratio. As the nanoparticle’s size decreases, there have some different surface shape existing, which makes the coordination number are different from each other. Both the surface energy and coordination number of surface atoms are the necessary consideration in understanding the thermal stability of nanoparticles. So, a new model free of any adjustable parameters, based on size-dependent surface energy and calculation of the surface atomic coordination number of nanoparticles, is developed to predict the size-dependent melting point of nanoparticles. The model can be utilized to predict the thermal stability of low-dimensional materials within a large size range. The theoretical predictions in terms of the model are consistent with experimental evidences.
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9 December 2019
Research Article|
September 12 2019
Size effects on melting point based on surface energy and coordination number
Shuai Zhang;
Shuai Zhang
Associate Professor
College of Materials Science and Engineering, Jilin Jian Zhu University, Changchun, China
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Lei Chen
College of Municipal and Environmental Engineering, Jilin Jian Zhu University, Changchun, China
(corresponding author: 7796549@qq.com)
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(corresponding author: 7796549@qq.com)
Publisher: Emerald Publishing
Received:
December 03 2017
Accepted:
August 21 2019
Online ISSN: 2046-0155
Print ISSN: 2046-0147
ICE Publishing: All rights reserved
2019
Emerging Materials Research (2019) 8 (4): 618–622.
Article history
Received:
December 03 2017
Accepted:
August 21 2019
Citation
Zhang S, Chen L (2019), "Size effects on melting point based on surface energy and coordination number". Emerging Materials Research, Vol. 8 No. 4 pp. 618–622, doi: https://doi.org/10.1680/jemmr.17.00077
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