A potential thermoelectric material CuAlO2 is theoretically studied. We first construct a model Hamiltonian of CuAlO2 based on the first principles band calculation, and calculate the Seebeck coefficient. Then, we compare the model with that of a well-known thermoelectric material NaxCoO2, and discuss the similarities and the differences. It is found that the two materials are similar from an electronic structure viewpoint in that they have a peculiar pudding-mold type band shape, which is advantageous for thermoelectric materials. There are, however, some differences, and we analyze the origin of the difference from a microscopic viewpoint. The band shape (a very flat band top but with an overall wide bandwidth) of CuAlO2 is found to be ev...
Size effects in thermoelectric Na x CoO2 thin films are studied, focusing on the electrical resisiti...
[[abstract]]This article reports the structure and optoelectronic properties of p-type CuAlO2 films....
The electronic structure of the prototypical p-type transparent conducting oxide CuAlO2 has been stu...
Copper-based delafossite oxides are excellent candidates for the p-type transparent conducting oxide...
Transport properties of Cu-based chalcopyrite materials are presented using the full potential linea...
10 páginas, 10 figuras, 1 tabla.-- PACS number(s): 72.80.Jc, 71.38.Ht, 61.05.cj, 78.70.Dm.-- et al.T...
The electronic structure and formation energies of N-doped CuAlO 2 are studied using first-principle...
Using first-principles methods we have calculated electronic structures, optical properties, and hol...
We discuss the thermoelectric properties of NaxCoO2 using the electronic structure, as determined in...
In this paper we present the results of calculations of the lattice thermal conductivity of layered ...
The origin of the recently discovered large thermopower in hole-doped PtSb2 is theoretically analyze...
We investigated the electronic structures and thermoelectric properties of CuMTe2 (M = Al Ga, In) co...
Electronic structures of the p-type Transparent Conducting Oxides (TCO): CuAlO2 and SrCu2O2 are calc...
CuAlO<sub>2</sub> is a prototypical delafossite <i>p</i>-type transparent conducting oxide (TCO). De...
The electronic, structural, mechanical, lattice dynamics and the electronic transport properties of ...
Size effects in thermoelectric Na x CoO2 thin films are studied, focusing on the electrical resisiti...
[[abstract]]This article reports the structure and optoelectronic properties of p-type CuAlO2 films....
The electronic structure of the prototypical p-type transparent conducting oxide CuAlO2 has been stu...
Copper-based delafossite oxides are excellent candidates for the p-type transparent conducting oxide...
Transport properties of Cu-based chalcopyrite materials are presented using the full potential linea...
10 páginas, 10 figuras, 1 tabla.-- PACS number(s): 72.80.Jc, 71.38.Ht, 61.05.cj, 78.70.Dm.-- et al.T...
The electronic structure and formation energies of N-doped CuAlO 2 are studied using first-principle...
Using first-principles methods we have calculated electronic structures, optical properties, and hol...
We discuss the thermoelectric properties of NaxCoO2 using the electronic structure, as determined in...
In this paper we present the results of calculations of the lattice thermal conductivity of layered ...
The origin of the recently discovered large thermopower in hole-doped PtSb2 is theoretically analyze...
We investigated the electronic structures and thermoelectric properties of CuMTe2 (M = Al Ga, In) co...
Electronic structures of the p-type Transparent Conducting Oxides (TCO): CuAlO2 and SrCu2O2 are calc...
CuAlO<sub>2</sub> is a prototypical delafossite <i>p</i>-type transparent conducting oxide (TCO). De...
The electronic, structural, mechanical, lattice dynamics and the electronic transport properties of ...
Size effects in thermoelectric Na x CoO2 thin films are studied, focusing on the electrical resisiti...
[[abstract]]This article reports the structure and optoelectronic properties of p-type CuAlO2 films....
The electronic structure of the prototypical p-type transparent conducting oxide CuAlO2 has been stu...