To help understand the factors controlling the performance of one of the most promising n-type oxide thermoelectric SrTiO3, we need to explore structural control at the atomic level. In Sr1–xLa2x/3TiO3 ceramics (0.0 ≤ x ≤ 0.9), we determined that the thermal conductivity can be reduced and controlled through an interplay of La-substitution and A-site vacancies and the formation of a layered structure. The decrease in thermal conductivity with La and A-site vacancy substitution dominates the trend in the overall thermoelectric response. The maximum dimensionless figure of merit is 0.27 at 1070 K for composition x = 0.50 where half of the A-sites are occupied with La and vacancies. Atomic resolution Z-contrast imaging and atomic scale chemica...
Inspired by recent research results that have demonstrated appealing thermoelectric performance of A...
The effect of calcining in either air (VSTO-A) or 5% H2/N2 (VSTO-H) on the thermoelectric performanc...
Nanostructuring is recognized as an efficient route for enhancing thermoelectric response. Here, we ...
To help understand the factors controlling the performance of one of the most promising n-type oxide...
To help understand the factors controlling the performance of one of the most promising n-type oxide...
ABSTRACT: The structure and thermoelectric (TE) properties of La-doped, A-site-deficient SrTiO3 (Sr...
La-doping mechanisms and thermoelectric properties of Sr3Ti2O7 Ruddlesden-Popper (RP) ceramics sinte...
Donor-doped SrTiO3 ceramics are very promising n-type oxide thermoelectrics. We show that significan...
In this project, the thermoelectric properties of La-doped Sr3Ti2O7, Ca3Ti2O7 and SrTiO3 ceramics si...
By tuning the A site cation size it is possible to control the degree of octahedral distortion and u...
International audienceCeramics based on Sr0.8La0.067Ti0.8Nb0.2O3-δ have been prepared by the mixed o...
The effect of calcining in either air (VSTO-A) or 5% H2/N2 (VSTO-H) on the thermoelectric performanc...
SrTiO3 is a well-studied n-type metal oxide based thermoelectric (TE) material. In this work, the fi...
SrTiO3 is a well-studied n-type metal oxide based thermoelectric (TE) material. In this work, the fi...
This work considers the enhancement of the thermoelectric figure of merit, ZT, of SrTiO3 (STO) semic...
Inspired by recent research results that have demonstrated appealing thermoelectric performance of A...
The effect of calcining in either air (VSTO-A) or 5% H2/N2 (VSTO-H) on the thermoelectric performanc...
Nanostructuring is recognized as an efficient route for enhancing thermoelectric response. Here, we ...
To help understand the factors controlling the performance of one of the most promising n-type oxide...
To help understand the factors controlling the performance of one of the most promising n-type oxide...
ABSTRACT: The structure and thermoelectric (TE) properties of La-doped, A-site-deficient SrTiO3 (Sr...
La-doping mechanisms and thermoelectric properties of Sr3Ti2O7 Ruddlesden-Popper (RP) ceramics sinte...
Donor-doped SrTiO3 ceramics are very promising n-type oxide thermoelectrics. We show that significan...
In this project, the thermoelectric properties of La-doped Sr3Ti2O7, Ca3Ti2O7 and SrTiO3 ceramics si...
By tuning the A site cation size it is possible to control the degree of octahedral distortion and u...
International audienceCeramics based on Sr0.8La0.067Ti0.8Nb0.2O3-δ have been prepared by the mixed o...
The effect of calcining in either air (VSTO-A) or 5% H2/N2 (VSTO-H) on the thermoelectric performanc...
SrTiO3 is a well-studied n-type metal oxide based thermoelectric (TE) material. In this work, the fi...
SrTiO3 is a well-studied n-type metal oxide based thermoelectric (TE) material. In this work, the fi...
This work considers the enhancement of the thermoelectric figure of merit, ZT, of SrTiO3 (STO) semic...
Inspired by recent research results that have demonstrated appealing thermoelectric performance of A...
The effect of calcining in either air (VSTO-A) or 5% H2/N2 (VSTO-H) on the thermoelectric performanc...
Nanostructuring is recognized as an efficient route for enhancing thermoelectric response. Here, we ...