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- W4316126892 endingPage "109681" @default.
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- W4316126892 abstract "The elastic constants and elastic modulus of un-doped and Cd-doped (4–6, 0) zigzag SWCNTs with different diameters are studied by density functional theory. This research has three crystal structures: hexagonal, orthorhombic, and triclinic. Besides, all cases have anisotropy features. This work showed that the elastic constants (ECs) had positive and negative values. Negative signs of ECs mean that the material has soft's features. The elastic modulus results indicated that the curve value of Young's modulus (Y), shear modulus (G), and bulk modulus (B) fluctuated up-down depending on the un-doped and Cd-doped (n, 0). The correlation between these elastic moduli as a function diameter of un-doped and Cd-doped zigzag SWCNTs is studied. The results show that Voigt's Y increases with increased tube diameter for both un-doped and Cd-doped. Simultaneously, Reuss and Hill's Y fluctuated for both un-doped and Cd-doped. The explanations of G are similar to Y for the curve value of G and the relation between G and tube diameter. The B values of un-doped (4–6, 0) increased with the increased diameter. Besides, the situation of Cd-doped (4–6, 0) is contrary. These results are strongly related to the diameter, n index, un-doped, and Cd-doped." @default.
- W4316126892 created "2023-01-14" @default.
- W4316126892 creator A5038046304 @default.
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- W4316126892 date "2023-03-01" @default.
- W4316126892 modified "2023-10-01" @default.
- W4316126892 title "Impacts of doping cadmium atoms on the mechanical properties of (n,0) zigzag SWCNTs: DFT approach" @default.
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- W4316126892 doi "https://doi.org/10.1016/j.diamond.2023.109681" @default.
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