Effect of shape and size on cohesive energy, Debye temperature and band gap of InxSc1-x Nanomaterial

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Auteur principal: Sharma, Atul Kumar
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2025
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author Sharma, Atul Kumar
author_facet Sharma, Atul Kumar
contents <p>Abstract <br>The study of nano-thermodynamic serves as a bridge between macroscopic and nanoscopic systems. A simple <br>theoretical approach based on Qi and Wang model is used to investigate the shape and size dependent <br>thermodynamic properties like cohesive energy, Debye temperature and energy band gap of InxSc1-x mixed <br>nanomaterial. The cohesive energy has been used as an important thermodynamic quantity to explore the extent <br>of effect of shape and size on important thermodynamic properties of InxSc1-x mixed nanomaterial. The properties <br>of nanomaterial such as cohesive energy and Debye temperature decrease with decreasing size due to an increase <br>in the number of dangling bonds in nanomaterials while band gap energy increases with decrease in size. They <br>are also shape dependent. This mixed nanomaterial will then have device applications. </p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15010195
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Effect of shape and size on cohesive energy, Debye temperature and band gap of InxSc1-x Nanomaterial
Sharma, Atul Kumar
Mixed Nanomaterial
Nano-thermodynamics
Nanoscopic
Band gap energy
<p>Abstract <br>The study of nano-thermodynamic serves as a bridge between macroscopic and nanoscopic systems. A simple <br>theoretical approach based on Qi and Wang model is used to investigate the shape and size dependent <br>thermodynamic properties like cohesive energy, Debye temperature and energy band gap of InxSc1-x mixed <br>nanomaterial. The cohesive energy has been used as an important thermodynamic quantity to explore the extent <br>of effect of shape and size on important thermodynamic properties of InxSc1-x mixed nanomaterial. The properties <br>of nanomaterial such as cohesive energy and Debye temperature decrease with decreasing size due to an increase <br>in the number of dangling bonds in nanomaterials while band gap energy increases with decrease in size. They <br>are also shape dependent. This mixed nanomaterial will then have device applications. </p>
title Effect of shape and size on cohesive energy, Debye temperature and band gap of InxSc1-x Nanomaterial
topic Mixed Nanomaterial
Nano-thermodynamics
Nanoscopic
Band gap energy
url https://doi.org/10.5281/zenodo.15010195