By Nuno Silvestre
Contains the most recent learn advances in computational nanomechanics in a single accomplished volume
- Covers computational instruments used to simulate and examine nanostructures
- Includes contributions from prime researchers
- Covers of latest methodologies/tools utilized to computational nanomechanics while additionally giving readers the recent findings on carbon-based aggregates (graphene, carbon-nanotubes, nanocomposites)
- Evaluates the effect of nanoscale phenomena in materials
Read or Download Advanced Computational Nanomechanics (Microsystem and Nanotechnology Series? ?(ME20)) PDF
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Additional resources for Advanced Computational Nanomechanics (Microsystem and Nanotechnology Series? ?(ME20))
6 Vibrational density of states of polymer atoms and graphene atoms  states for better matching. Up to now, researchers have focused on two methods: covalent functionalisation and non-covalent functionalisation in graphene. 1 Covalent Functionalisation Covalent functionalisation has been recognised as an effective method for promoting interfacial acoustic coupling between carbon nanostructures and polymers. Earlier research studies have proven that it is able to enhance the interfacial thermal transport across carbon nanotube–polymer interfaces [151–155].
2007) A chemical route to graphene for device applications. Nano Letters, 7, 3394–3398.  Nethravathi, C. and Rajamathi, M. (2008) Chemically modified graphene sheets produced by the solvothermal reduction of colloidal dispersions of graphite oxide. Carbon, 46, 1994–1998.  Park, S. S. (2009) Chemical methods for the production of graphenes. Nature Nanotechnology, 4, 217–224.  Si, Y. T. (2008) Synthesis of water soluble graphene. Nano Letters, 8, 1679–1682. , Wang, B. et al. (2009) Synthesis and characterisation of hydrophilic and organophilic graphene nanosheets.
Nature Nanotechnology, 3, 538–542. , Bao, W. et al. (2008) Superior thermal conductivity of single-layer graphene. Nano Letters, 8, 902–907. , Teweldebrhan, D. et al. (2008) Extremely high thermal conductivity of graphene: Prospects for thermal management applications in nanoelectronic circuits. Applied Physics Letters, 92, 151911. , Scardaci, V. et al. (2006) Raman spectrum of graphene and graphene layers. Physical Review Letters, 97, 187401. , Joshi, P. et al. (2006) Raman scattering from high-frequency phonons in supported n-graphene layer films.