Nanoindentation of thin graphdiyne films: Experiments and molecular dynamics simulation
نویسندگان
چکیده
منابع مشابه
architecture and engineering of nanoscale sculptured thin films and determination of their properties
چکیده ندارد.
15 صفحه اولNanoindentation of GaSe thin films
The structural and nanomechanical properties of GaSe thin films were investigated by means of X-ray diffraction (XRD) and nanoindentation techniques. The GaSe thin films were deposited on Si(111) substrates by pulsed laser deposition. XRD patterns reveal only the pure (000 l)-oriented reflections originating from the hexagonal GaSe phase and no trace of any impurity or additional phases. Nanoin...
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The epitaxial growth of atomic systems, interacting via the spherically symmetric Lcnnard-Jones potential is studied as a function of substrate temperature Ts and deposition rate. The calculations reveal the microscopic structure of thin films, and give insight into the dynamics of the adsorption process. For all substrate temperatures the growth is into well ordered layers which become fully c...
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Molecular dynamics simulations of thermal conduction in nanoporous thin films are performed. Thermal conductivity displays an inverse temperature dependence for films with small pores and a much less pronounced dependence for larger pores. Increasing porosity reduces thermal conductivity, while pore shape has little effect except in the most anisotropic cases. The pores separate the film into l...
متن کاملCorrection: Nanoindentation experiments for single-layer rectangular graphene films: a molecular dynamics study
Correction In the original version of this article [1], the sizes of the simulated graphene models with different aspect ratios were not listed. Here, we add Table one (Table 1 here) to illustrate the sizes of rectangular graphene films simulated in the article [1]. In addition, there is a typo in the Acknowledgements section of the origin version of this article [1]. The right one is given in ...
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ژورنال
عنوان ژورنال: Carbon
سال: 2019
ISSN: 0008-6223
DOI: 10.1016/j.carbon.2018.12.029