The temperature dependence of the thermal conductivity of 27 different single crystal oxides is reported from ≈20 K to 350 K. These crystals have been selected among the most common substrates for growing epitaxial thin-film oxides, spanning over a range of lattice parameters from ≈3.7 Å to ≈12.5 Å. Different contributions to the phonon relaxation time are discussed on the basis of the Debye model. This work provides a database for the selection of appropriate substrates for thin-film growth according to their desired thermal properties, for applications in which heat management is important
Heat conduction in ceramics is attributed to phonon propagation, which can be strongly suppressed at...
94 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.The aim of this research is to...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...
The temperature dependence of the thermal conductivity of 27 different single crystal oxides is repo...
Values for the thermal conductivity kappa and the thermal diffusivity D of four oxide single crystal...
The prediction and measurement of the thermal conductivity, k, of crystalline materials, particularl...
Using finite-temperature phonon calculations and machine-learning methods, we assess the mechanical ...
Transparent conducting oxides are an exciting family of materials with applications ranging from dis...
The temperature dependence thermal conductivity of the indium-gallium-zinc oxide (IGZO) thin films w...
The dispersion law, density states of phonons, thermodynamics properties and thermal conductivity wa...
SrTiO3 (100) epitaxial films with thicknesses of 3, 1 μm, and 250 nm were prepared on MgO (100) subs...
Oxides hold great promise as new and improved materials for thermal-barrier coating applications. Th...
The phase composition and heat conductivity of (ZrO2)0.9(R2O3)0.1 solid solution single crystals hav...
The role of the ferroelectric polarization state and crystal structure in determining the room-tempe...
Thermal insulation at nanoscale is of crucial importance for non-volatile memory devices such as pha...
Heat conduction in ceramics is attributed to phonon propagation, which can be strongly suppressed at...
94 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.The aim of this research is to...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...
The temperature dependence of the thermal conductivity of 27 different single crystal oxides is repo...
Values for the thermal conductivity kappa and the thermal diffusivity D of four oxide single crystal...
The prediction and measurement of the thermal conductivity, k, of crystalline materials, particularl...
Using finite-temperature phonon calculations and machine-learning methods, we assess the mechanical ...
Transparent conducting oxides are an exciting family of materials with applications ranging from dis...
The temperature dependence thermal conductivity of the indium-gallium-zinc oxide (IGZO) thin films w...
The dispersion law, density states of phonons, thermodynamics properties and thermal conductivity wa...
SrTiO3 (100) epitaxial films with thicknesses of 3, 1 μm, and 250 nm were prepared on MgO (100) subs...
Oxides hold great promise as new and improved materials for thermal-barrier coating applications. Th...
The phase composition and heat conductivity of (ZrO2)0.9(R2O3)0.1 solid solution single crystals hav...
The role of the ferroelectric polarization state and crystal structure in determining the room-tempe...
Thermal insulation at nanoscale is of crucial importance for non-volatile memory devices such as pha...
Heat conduction in ceramics is attributed to phonon propagation, which can be strongly suppressed at...
94 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2006.The aim of this research is to...
We present an overview and preliminary analysis of computed thermoelectric properties for more than ...