In this work, multiple strategies have been adopted to suppress the lattice thermal conductivity in β-Ga2O3 by point defects, grain boundaries, secondary phases, and pores. Porous β-Ga2O3 was prepared by a convenient calcination method together with spark plasma sintering technology. Positron annihilation lifetime and cathodoluminescence measurements reveal the existence of small micropores and various vacancies in the as-sintered β-Ga2O3. Macropores with sizes on the order of hundreds of nanometers are also observed by scanning electron microscopy. Due to these pores, the as-sintered β-Ga2O3 shows a high porosity of 63.4% and possesses abundant boundaries between the solid matrix and the air. In addition, the secondary phase of ε-Ga2O3 is ...
A series of La-doped (10 at.%) SrTiO 3 ceramics with grain size ranging from 6 m to 24 nm was prepar...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
We investigate the structural, electronic, vibrational, power, and transport properties of the β all...
International audienceIn this article, lattice thermal conductivity of α-phase Ga 2 O 3 is investiga...
Abstract. For β-Ga2O3 only little information exist concerning the thermal properties, especially th...
The lattice thermal conductivity (LTC) of Ga$_2$O$_3$ is an important property due to the challenge ...
Abstract The Ga2O3(ZnO)m family of homologous compounds have been identified as potential thermoelec...
Ga2O3(ZnO)m (m = integer) homologous compounds are naturally occurring nanostructured materials. The...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
The thermal stability of ε-Ga2O3 polymorph was studied by complementary methods. Epitaxial films of ...
The results of a theoretical study on the point defects of monoclinic β-Ga2O3 are reported here. The...
Owing to the intrinsically good near-room-temperature thermoelectric performance, β-Ag2Se has been c...
A remarkable improvement in the conductivity of grown nitrogen-doped p-type β-Ga2O3 films was succes...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Beta-gallium oxide (β-Ga2O3) is an emerging wide bandgap semiconductor for next generation power dev...
A series of La-doped (10 at.%) SrTiO 3 ceramics with grain size ranging from 6 m to 24 nm was prepar...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
We investigate the structural, electronic, vibrational, power, and transport properties of the β all...
International audienceIn this article, lattice thermal conductivity of α-phase Ga 2 O 3 is investiga...
Abstract. For β-Ga2O3 only little information exist concerning the thermal properties, especially th...
The lattice thermal conductivity (LTC) of Ga$_2$O$_3$ is an important property due to the challenge ...
Abstract The Ga2O3(ZnO)m family of homologous compounds have been identified as potential thermoelec...
Ga2O3(ZnO)m (m = integer) homologous compounds are naturally occurring nanostructured materials. The...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
The thermal stability of ε-Ga2O3 polymorph was studied by complementary methods. Epitaxial films of ...
The results of a theoretical study on the point defects of monoclinic β-Ga2O3 are reported here. The...
Owing to the intrinsically good near-room-temperature thermoelectric performance, β-Ag2Se has been c...
A remarkable improvement in the conductivity of grown nitrogen-doped p-type β-Ga2O3 films was succes...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
Beta-gallium oxide (β-Ga2O3) is an emerging wide bandgap semiconductor for next generation power dev...
A series of La-doped (10 at.%) SrTiO 3 ceramics with grain size ranging from 6 m to 24 nm was prepar...
Porous structure possesses full potentials to develop high-performance thermoelectric materials with...
We investigate the structural, electronic, vibrational, power, and transport properties of the β all...