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- W2774421389 abstract "We used the stable strain gradient theory including acceleration gradients to investigate the classical and nonclassical mechanical properties of gallium nitride (GaN) nanowires (NWs). We predicted the static length scales, Young's modulus, and shear modulus of the GaN NWs from the experimental data. Combining these results with atomic simulations, we also found the dynamic length scale of the GaN NWs. Young's modulus, shear modulus, static, and dynamic length scales were found to be 318 GPa, 131 GPa, 8 nm, and 8.9 nm, respectively, usable for demonstrating the static and dynamic behaviors of GaN NWs having diameters from a few nm to bulk dimensions. Furthermore, the experimental data were analyzed with classical continuum theory (CCT) and compared with the available literature to illustrate the size-dependency of the mechanical properties of GaN NWs. This practice resolves the previous published discrepancies that happened due to the limitations of CCT used for determining the mechanical properties of GaN NWs and their size-dependency." @default.
- W2774421389 created "2017-12-22" @default.
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- W2774421389 date "2017-12-14" @default.
- W2774421389 modified "2023-10-18" @default.
- W2774421389 title "Classical continuum theory limits to determine the size-dependency of mechanical properties of GaN NWs" @default.
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- W2774421389 doi "https://doi.org/10.1063/1.5000016" @default.
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