Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2009.Cataloged from PDF version of thesis.Includes bibliographical references (p. 123-130).The accurate prediction of physical properties in the vast spaces of nanoscale structures and chemical compounds is made increasingly possible through the use of atomistic and ab initio computation. In this thesis we investigate lattice thermal conductivities KL and electronic band gaps E,, which are relevant to thermoelectric and photovoltaic applications, respectively, and develop or modify computational tools for predicting and optimizing these properties. For lattice thermal conductivity, we study SiGe nanostructures, which are technologically important for thermoelectric ap...
Recent progress in developing algorithms for solving the electronic structure problem for nanostruct...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...
Thermoelectric materials have demanded a significant amount of attention for their ability to conver...
We investigate the parametrization and optimization of thermal conductivity in silicon-germanium all...
116 p.Recently, nanostructured materials have received tremendous attention because of their excepti...
Various theoretical and experimental methods are utilized to investigate the thermal conductivity of...
Solar electricity is a reliable and environmentally friendly method of sustainable energy production...
An essential issue in developing semiconductor devices for photovoltaics and thermoelectrics is to d...
With increasing population, growing energy demands, and environmental concerns the search for greene...
As nanoscales become accessible to experimentalists, atomistic simulations of materials are becoming...
We have used an atomistic ab initio approach with no adjustable parameters to compute the lattice th...
A finite electronic band gap is a standard filter in high-throughput screening of materials using de...
In this paper we will give an account of applications of quantum-mechanical (first-principles) elect...
The technological progress in dimensional scaling has not only kept Silicon CMOS industry on Moore\u...
We discuss results of ab initio calculations for Si, Ge, and Si/Ge nanowires and nanocrystals showin...
Recent progress in developing algorithms for solving the electronic structure problem for nanostruct...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...
Thermoelectric materials have demanded a significant amount of attention for their ability to conver...
We investigate the parametrization and optimization of thermal conductivity in silicon-germanium all...
116 p.Recently, nanostructured materials have received tremendous attention because of their excepti...
Various theoretical and experimental methods are utilized to investigate the thermal conductivity of...
Solar electricity is a reliable and environmentally friendly method of sustainable energy production...
An essential issue in developing semiconductor devices for photovoltaics and thermoelectrics is to d...
With increasing population, growing energy demands, and environmental concerns the search for greene...
As nanoscales become accessible to experimentalists, atomistic simulations of materials are becoming...
We have used an atomistic ab initio approach with no adjustable parameters to compute the lattice th...
A finite electronic band gap is a standard filter in high-throughput screening of materials using de...
In this paper we will give an account of applications of quantum-mechanical (first-principles) elect...
The technological progress in dimensional scaling has not only kept Silicon CMOS industry on Moore\u...
We discuss results of ab initio calculations for Si, Ge, and Si/Ge nanowires and nanocrystals showin...
Recent progress in developing algorithms for solving the electronic structure problem for nanostruct...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...
Thermoelectric materials have demanded a significant amount of attention for their ability to conver...