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Download e-book for kindle: Advanced CMOS process technology by J. M. Pimbley

By J. M. Pimbley

ISBN-10: 0122341198

ISBN-13: 9780122341199

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15. E. Hosono, S. Fujihara, I. Honma and H. Zhou, Superhydrophobic perpendicular nanopin film by the bottom-up process. J. Am. Chem. Soc. 127, 13458–13459 (2005). 16. T. Onda, S. Shibuichi, N. Satoh and K. Tsujii, Super-water-repellent fractal surfaces. Langmuir 12, 2125–2127 (1996). 17. E. H. K. Y. Suh, Nanoengineered multiscale hierarchical structures with tailored wetting properties. Langmuir 22, 1640–1645 (2006). 18. S. Shibuichi, T. Onda, N. Satoh and K. Tsujii, Super water-repellent surfaces resulting from fractal structure.

82] utilized atomistic simulation to study the deformation of a highly flexible nanotube forming a thermodynamically stable self-folded structure, and presented the critical length and critical temperature for folding or unfolding. In succession, Zhou et al. [83] obtained the critical length of the self-folding of CNTs by MD simulations and infinitesimal deformation analysis. Mikata [84] then derived an approximate solution for the self-folding of CNTs on the assumption that the curvature at the adhesion point was zero.

88. J. Xiao, B. Liu, Y. Huang, J. C. F. Yu, Collapse and stability of single- and multi-wall carbon nanotubes. Nanotechnology 18, 395703 (2007). 89. L. Liu, Explicit solutions for a SWCNT collapse. Archives Appl. Mech. 82, 767–776 (2012). 90. C. Zhang, L. H. Chen, Adhesion between two radially collapsed single-walled carbon nanotubes. Acta. Mech. 224, 2759–2770 (2013). 91. U. Seifert, Adhesion of vesicles in two dimensions. Phys. Rev. A 43, 6803–6814 (1991). 92. X. Oyharcabal and T. Frisch, Peeling off an elastica from a smooth attractive substrate.

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Advanced CMOS process technology by J. M. Pimbley


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