The size and shape effects on the melting point of nanoparticles based on the lennard-jones potential function

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Abstract

A model is proposed to calculate the melting points of nanoparticles based on the Lennard-Jones (L-J) potential function. The effects of the size, the shape, and the atomic volume and surface packing of the nanoparticles are considered in the model. The model, based on the L-J potential function for spherical nanoparticles, agrees with the experimental values of gold (Au) and lead (Pb) nanoparticles. The model, based on the L-J potential function, is consistent with Qi and Wang’s model that predicts the Gibbs-Thompson relation. Moreover, the model based on the non-integer L-J potential function can be used to predict the melting points Tm of nanoparticles.

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Rsheed, A. A., Aldawood, S., & Aldossary, O. M. (2021). The size and shape effects on the melting point of nanoparticles based on the lennard-jones potential function. Nanomaterials, 11(11). https://doi.org/10.3390/nano11112916

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