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Bimonthly, started in 1957
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Shanxi Provincial Education Department
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Taiyuan University of Technology
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Ed. Office of Journal of TYUT
Editor-in-Chief
SUN Hongbin
ISSN: 1007-9432
CN: 14-1220/N
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  • The Young’s Modulus of Nanomaterials: Size Effect
    DOI:
    10.16355/j.tyut.1007-9432.20230836
    Received:
    Accepted:
    abstract:
    PurposesThe Youngs moduli of nanomaterials are completely different from these of their bulk counterparts, and the size effect on Youngs modulus is greatly obvious. Moreover, the change trend of Youngs modulus with size is complicate. With size dropping, the Youngs moduli of some metallic nanomaterials increase, while they decrease for some semiconductor nanomaterials. However, the reason why size effect on the Youngs modulus of nanomaterials varies, is still unclear.MethodsIn this study, on the basis of the thermodynamic theory and cohesive energy of nanomaterials, a theoretical model for the size-dependent Youngs modulus of nanomaterials is deduced. In this model, the inherent relationship between atomic potential and the Youngs modulus is taken into account, and material coefficient that directly reflects the bond nature in a material is introduced. The established model can well explain the change trend of Youngs modulus with size for metallic and nonmetallic materials, and also discover the contributions of surface modulus and interior modulus for the Youngs modulus in a nanomaterial. Simultaneously, the physical mechanism of relationship of Youngs modulus with size or atomic bond is explained.ConclusionsThe predictions for the Youngs moduli of zero-dimensional nanoparticles, one-dimensional nanowires, and two-dimensional nanofilms are obtained by analyzing the established theoretical model in this study.
    Keywords:
    nanomaterials; Young’s modulus; size effect; thermodynamic; cohesive energy;

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