Simple theoretical model has been proposed to study the size dependence of thermodyamic properties i.e. melting temperature, Debye temperature and elastic properties i.e. bulk modulus, Young modulus, thermal expansion coefficient. The model is then applied to Pb spherical nanosolid, Au nanowire and Fe spherical nanosoid. On comparing with available experimental findings, the results obtained in the present study give a close agreement and hence, demonstrate the validity of the method proposed in the present paper
A new approach to modeling of the plasticity of materials with nanostructure and ultrafine one has b...
Size dependencies of some atomic properties of nanophases related to extended interfaces are conside...
A theory for the size dependence of the coefficient of thermal expansion (CTE) of nanostructures is ...
604-608Simple theoretical model has been proposed to study the size dependence of thermodyamic prop...
A simple theoretical model is developed to study the size, shape and temperature effect on nanomater...
284-292Thermodynamic analytic model has been discussed to study the size as well as shape effect on ...
In this paper, a new theoretical two-phase (solid–liquid) type model of melting temperature has deve...
A semi-empirical thermodynamic model for size dependency of melting point of nano particles and wire...
251-258A simple theoretical model is developed, which includes the effect of size, pressure and tem...
A simple theory is proposed to study the size- and shape-dependent specific heat, melting entropy an...
951-955A simple theory based on bond energy model is developed. The model is used to predict the siz...
A simple theory based on bond energy model is developed. The model is used to predict the size and s...
Thermodynamic model first published in 1909, is being used extensively to understand the size-depend...
AbstractA simple theory is proposed to study the size- and shape-dependent specific heat, melting en...
AbstractA theoretical model has been developed for the calculation of the thermal conductivity of na...
A new approach to modeling of the plasticity of materials with nanostructure and ultrafine one has b...
Size dependencies of some atomic properties of nanophases related to extended interfaces are conside...
A theory for the size dependence of the coefficient of thermal expansion (CTE) of nanostructures is ...
604-608Simple theoretical model has been proposed to study the size dependence of thermodyamic prop...
A simple theoretical model is developed to study the size, shape and temperature effect on nanomater...
284-292Thermodynamic analytic model has been discussed to study the size as well as shape effect on ...
In this paper, a new theoretical two-phase (solid–liquid) type model of melting temperature has deve...
A semi-empirical thermodynamic model for size dependency of melting point of nano particles and wire...
251-258A simple theoretical model is developed, which includes the effect of size, pressure and tem...
A simple theory is proposed to study the size- and shape-dependent specific heat, melting entropy an...
951-955A simple theory based on bond energy model is developed. The model is used to predict the siz...
A simple theory based on bond energy model is developed. The model is used to predict the size and s...
Thermodynamic model first published in 1909, is being used extensively to understand the size-depend...
AbstractA simple theory is proposed to study the size- and shape-dependent specific heat, melting en...
AbstractA theoretical model has been developed for the calculation of the thermal conductivity of na...
A new approach to modeling of the plasticity of materials with nanostructure and ultrafine one has b...
Size dependencies of some atomic properties of nanophases related to extended interfaces are conside...
A theory for the size dependence of the coefficient of thermal expansion (CTE) of nanostructures is ...