This work considers the enhancement of the thermoelectric figure of merit, ZT, of SrTiO3 (STO) semiconductors by (La, Dy and N) co-doping. We have focused on SrTiO3 because it is a semiconductor with a high Seebeck coefficient compared to that of metals. It is expected that SrTiO3 can provide a high power factor, because the capability of converting heat into electricity is proportional to the Seebeck coefficient squared. This research aims to improve the thermoelectric performance of SrTiO3 by replacing host atoms by La, Dy and N atoms based on a theoretical approach performed with the Vienna Ab Initio Simulation Package (VASP) code. Here, undoped SrTiO3, Sr0.875La0.125TiO3, Sr0.875Dy0.125TiO3, SrTiO2.958N0.042, Sr0.750La0.125Dy0.125TiO3 a...
peer reviewedUsing first-principles electronic structure calcu- lations, we studied the electronic ...
© 2019 The Authors. Published by the Royal Society under the terms of the Creative Commons Attributi...
Electron doped-SrTiO3 is a well-known n-type thermoelectric material, although the figure of merit o...
This work considers the enhancement of the thermoelectric figure of merit, ZT, of SrTiO3 (STO) semic...
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...
The doped SrTiO3 as a thermoelectric material has been extensively studied both experimentally and t...
This paper deals with enhancement of thermoelectric performance of SrTiO3-a perovskite-based materi...
Donor-doped strontium titanate (SrTiO3) is one of the most promising n-type oxide thermoelectric mat...
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...
Thermoelectric materials are opening a promising pathway to address energy conversion issues governe...
We present an investigation of the thermoelectric properties of cubic perovskite SrTiO3. The results...
To help understand the factors controlling the performance of one of the most promising n-type oxide...
Thermoelectrics, enabling the direct energy conversion between electricity and heat, provide alterna...
peer reviewedUsing first-principles electronic structure calcu- lations, we studied the electronic ...
© 2019 The Authors. Published by the Royal Society under the terms of the Creative Commons Attributi...
Electron doped-SrTiO3 is a well-known n-type thermoelectric material, although the figure of merit o...
This work considers the enhancement of the thermoelectric figure of merit, ZT, of SrTiO3 (STO) semic...
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...
The doped SrTiO3 as a thermoelectric material has been extensively studied both experimentally and t...
This paper deals with enhancement of thermoelectric performance of SrTiO3-a perovskite-based materi...
Donor-doped strontium titanate (SrTiO3) is one of the most promising n-type oxide thermoelectric mat...
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...
Thermoelectric materials are opening a promising pathway to address energy conversion issues governe...
We present an investigation of the thermoelectric properties of cubic perovskite SrTiO3. The results...
To help understand the factors controlling the performance of one of the most promising n-type oxide...
Thermoelectrics, enabling the direct energy conversion between electricity and heat, provide alterna...
peer reviewedUsing first-principles electronic structure calcu- lations, we studied the electronic ...
© 2019 The Authors. Published by the Royal Society under the terms of the Creative Commons Attributi...
Electron doped-SrTiO3 is a well-known n-type thermoelectric material, although the figure of merit o...