Donor-doped SrTiO3 ceramics are very promising n-type oxide thermoelectrics. We show that significant improvements in the thermoelectric power factor can be achieved by control of the nanostructure and microstructure. Using additions of B2O3 and ZrO2, high density, high quality Sr0.9Nd0.1TiO3 ceramics were synthesised by the mixed oxide route; samples were heat treated in a single step under reducing atmosphere at 1673 K. Synchrotron and electron diffraction studies revealed an I4/mcm tetragonal symmetry for all specimens. Microstructure development depended on the ZrO2 content; low level additions of ZrO2 (up to 0.3 wt%) led to a uniform grain size with transformation-induced sub-grain boundaries. HRTEM studies showed a high density of dis...
The structure and thermoelectric (TE) properties of La-doped, A-site-deficient SrTiO3 (Sr1–3x/2LaxTi...
The effect of calcining in either air (VSTO-A) or 5% H2/N2 (VSTO-H) on the thermoelectric performanc...
In this project, the thermoelectric properties of La-doped Sr3Ti2O7, Ca3Ti2O7 and SrTiO3 ceramics si...
Donor-doped SrTiO3 ceramics are very promising n-type oxide thermoelectrics. We show that significan...
Nanostructuring is recognized as an efficient route for enhancing thermoelectric response. Here, we ...
Conventional non-oxide materials utilised in thermoelectric devices have unfavourable properties suc...
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...
To help understand the factors controlling the performance of one of the most promising n-type oxide...
La-doping mechanisms and thermoelectric properties of Sr3Ti2O7 Ruddlesden-Popper (RP) ceramics sinte...
The direct energy conversion between heat and electricity based on thermoelectric effects is a topic...
Thermoelectric materials convert a temperature difference into electricity through a phenomenon know...
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...
The addition of graphene has been reported as a potential route to enhance the thermoelectric perfor...
The structure and thermoelectric (TE) properties of La-doped, A-site-deficient SrTiO3 (Sr1–3x/2LaxTi...
The effect of calcining in either air (VSTO-A) or 5% H2/N2 (VSTO-H) on the thermoelectric performanc...
In this project, the thermoelectric properties of La-doped Sr3Ti2O7, Ca3Ti2O7 and SrTiO3 ceramics si...
Donor-doped SrTiO3 ceramics are very promising n-type oxide thermoelectrics. We show that significan...
Nanostructuring is recognized as an efficient route for enhancing thermoelectric response. Here, we ...
Conventional non-oxide materials utilised in thermoelectric devices have unfavourable properties suc...
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...
To help understand the factors controlling the performance of one of the most promising n-type oxide...
La-doping mechanisms and thermoelectric properties of Sr3Ti2O7 Ruddlesden-Popper (RP) ceramics sinte...
The direct energy conversion between heat and electricity based on thermoelectric effects is a topic...
Thermoelectric materials convert a temperature difference into electricity through a phenomenon know...
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...
The addition of graphene has been reported as a potential route to enhance the thermoelectric perfor...
The structure and thermoelectric (TE) properties of La-doped, A-site-deficient SrTiO3 (Sr1–3x/2LaxTi...
The effect of calcining in either air (VSTO-A) or 5% H2/N2 (VSTO-H) on the thermoelectric performanc...
In this project, the thermoelectric properties of La-doped Sr3Ti2O7, Ca3Ti2O7 and SrTiO3 ceramics si...