4.5 Article

A universal method to calculate the surface energy density of spherical surfaces in crystals

Journal

ACTA MECHANICA SINICA
Volume 33, Issue 1, Pages 77-82

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s10409-016-0605-z

Keywords

Surface energy density; Nanoparticle; Nanocavity

Funding

  1. National Natural Science Foundation of China [11272249, 11525209]

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Surface energy plays an important role in the mechanical performance of nanomaterials; however, determining the surface energy density of curved surfaces remains a challenge. In this paper, we conduct atomic simulations to calculate the surface energy density of spherical surfaces in various crystalline metals. It is found that the average surface energy density of spherical surfaces remains almost constant once its radius exceeds 5 nm. Then, using a geometrical analysis and the scaling law, we develop an analytical approach to estimate the surface energy density of spherical surfaces through that of planar surfaces. The theoretical prediction agrees well with the direct atomic simulations, and thus provides a simple and general method to calculate the surface energy density in crystals.

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