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Titlebook: Nano-scale Heat Transfer in Nanostructures; Toward Understanding Jihong Al-Ghalith,Traian Dumitrică Book 2018 The Author(s) 2018 Nano-scale

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Deformed Carbon Nanotubes,ence of mechanical deformation on the thermal transport of carbon nanotubes is studied by non-equilibrium molecular dynamics. Nanotubes of different bending angles, lengths, diameters, chiralities, and degrees of twist are simulated in the regime in which the thermal transport extends from ballistic
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Methodology,omic potentials and hence more closely recapitulates the true physical properties of materials. In this chapter, we introduce some popular methods and numerical techniques for classical molecular dynamics, along with a brief discussion of theoretical and physical properties that can be derived from molecular dynamics simulations.
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Conclusion,cts or under mechanical deformation. By processing these data with statistical physics methods, we are able to relate the motion of hundreds of thousands of atoms to measurable thermal properties of the structure.
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Book 2018three modern topics. The study of .heat transport in screw-dislocated nanowires. with low thermal conductivity in their bulk form represents the knowledge base needed for engineering thermal transport in advanced thermoelectric and electronic materials, and suggests a new route to lower thermal cond
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Screw-Dislocated Nanostructures,onstructed surface and dislocation yield ultralow thermal conductivity values. Molecular dynamics (MD) simulations suggest that the large dislocation strain field in nanowires may play a key role in suppressing the thermal conductivity of thermoelectric nanomaterials further to enhance their thermoelectricity.
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Introduction,pes of materials of interest, which are of great importance in modern nanotechnology and thermal management applications, will then be introduced. At the end of this chapter, the theoretical background of dislocation in nanomaterials and what effect it may have on heat transport in nanomaterials will be presented.
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