A powerful technique is introduced for simulating mechanical and electromechanical properties of one-dimensional nanostructures under arbitrary combinations of bending, twisting, and stretching. The technique is based on an unconventional control of periodic symmetry which eliminates artifacts due to deformation constraints and quantum finite-size effects and allows transparent electronic-structure analysis. Via density-functional tight-binding implementation, the technique demonstrates its utility by predicting nonlinear electromechanical properties in carbon nanotubes and abrupt behavior in the structural yielding of Au7 and Mo6S6 nanowires. The technique drives simulations markedly closer to the realistic modeling of these slender...
Carbon nanotubes continue to surprise scientists with their novel properties. Recently we have disco...
Electrical transport properties of carbon nanotubes can be dramatically changed by mechanical deform...
The aim of the present paper is the theoretical investigation of the mechanical properties of carbon...
Soon after the discovery of carbon nanotubes, it was realized that the theoretically predicted mecha...
Hefty commercial potential of nanotechnology drives great research interest to nanoscience. This is...
University of Minnesota Ph.D. dissertation. November 2010. Major: Material Science and Engineering. ...
Carbon nanotubes (CNTs) can be metallic or semiconductors depending simply on geometric characterist...
Carbon nanotubes (CNTs) can be metallic or semiconductors depending simply on geometric characterist...
The simulation of nanostructures for sensor and circuit applications requires new concepts, namely e...
The operation principles of nanoscale devices are based upon both electronic and mechanical properti...
The study of the mechanical properties of nanostructures presents new theoretical and experimental c...
Nanoscale materials have highly regular atomistic structures with very few defects due to their smal...
We present a machine learning based model that can predict the electronic structure of quasi-one-dim...
The mechanics and chemistry of carbon nanotubes have relevance for their numerous electronic applica...
We present a machine learning based model that can predict the electronic structure of quasi-one-dim...
Carbon nanotubes continue to surprise scientists with their novel properties. Recently we have disco...
Electrical transport properties of carbon nanotubes can be dramatically changed by mechanical deform...
The aim of the present paper is the theoretical investigation of the mechanical properties of carbon...
Soon after the discovery of carbon nanotubes, it was realized that the theoretically predicted mecha...
Hefty commercial potential of nanotechnology drives great research interest to nanoscience. This is...
University of Minnesota Ph.D. dissertation. November 2010. Major: Material Science and Engineering. ...
Carbon nanotubes (CNTs) can be metallic or semiconductors depending simply on geometric characterist...
Carbon nanotubes (CNTs) can be metallic or semiconductors depending simply on geometric characterist...
The simulation of nanostructures for sensor and circuit applications requires new concepts, namely e...
The operation principles of nanoscale devices are based upon both electronic and mechanical properti...
The study of the mechanical properties of nanostructures presents new theoretical and experimental c...
Nanoscale materials have highly regular atomistic structures with very few defects due to their smal...
We present a machine learning based model that can predict the electronic structure of quasi-one-dim...
The mechanics and chemistry of carbon nanotubes have relevance for their numerous electronic applica...
We present a machine learning based model that can predict the electronic structure of quasi-one-dim...
Carbon nanotubes continue to surprise scientists with their novel properties. Recently we have disco...
Electrical transport properties of carbon nanotubes can be dramatically changed by mechanical deform...
The aim of the present paper is the theoretical investigation of the mechanical properties of carbon...