Solution-based synthesis of thermoelectric nanoplates, which provides a low thermal conductivity due to the grain boundary scattering, has received considerable attention as a scalable method. However, the scattering also decreased electrical conductivity leading to a low thermoelectric figure of merit (ZT). Here we employed expanded graphene to enhance thermoelectric performance of p-type Bi0.5Sb1.5Te3 composites by simultaneous improvement in electrical conduction and phonon scattering. The addition of expanded graphene (0.1vol%) improved both carrier concentration and electrical conductivity of composites due to the high intrinsic p-type carrier concentration of graphene. Besides, it significantly decreased lattice thermal conductivity d...
Thermoelectric materials, which can change the waste heat into the usable electricity, are intereste...
The thermoelectric hetero nano region, as a new strategy, can effectively modulate the electrical an...
Thermoelectric figures of merit of ZT ≈ 0.4 at room temperature were achieved in nanostructure...
We report the synergistic optimization of the thermoelectric properties in p-type Bi0.48Sb1.52Te3 by...
The inclusion of secondary phase in a matrix has been proven effective in diverse regimes of thermoe...
© 2020 The Royal Society of Chemistry. The concept of composite material has been increasingly appli...
The concept of composite material has been increasingly applied for the significant improvement on t...
Constructing a nanocomposite to introduce a coherent interface is an effective way to improve the pr...
This study examines the effects of the structural integrity of graphene on the thermoelectric proper...
Improvement in thermoelectric parameters is reported with graphite incorporation in n-type Bi2Te3/gr...
International audienceThe enhancement of thermoelectric figure of merit ZT requires to either increa...
Thermoelectric figures of merit of ZT ≈ 0.4 at room temperature were achieved in nanostructured comp...
Cu2SnSe3 material is regarded as a potential thermoelectric material due to its relatively high carr...
Thermoelectric materials enable the direct conversion between heat and electricity, offering a susta...
The concept of nanocomposite/nanostructuring in thermoelectric materials has been proven to be an ef...
Thermoelectric materials, which can change the waste heat into the usable electricity, are intereste...
The thermoelectric hetero nano region, as a new strategy, can effectively modulate the electrical an...
Thermoelectric figures of merit of ZT ≈ 0.4 at room temperature were achieved in nanostructure...
We report the synergistic optimization of the thermoelectric properties in p-type Bi0.48Sb1.52Te3 by...
The inclusion of secondary phase in a matrix has been proven effective in diverse regimes of thermoe...
© 2020 The Royal Society of Chemistry. The concept of composite material has been increasingly appli...
The concept of composite material has been increasingly applied for the significant improvement on t...
Constructing a nanocomposite to introduce a coherent interface is an effective way to improve the pr...
This study examines the effects of the structural integrity of graphene on the thermoelectric proper...
Improvement in thermoelectric parameters is reported with graphite incorporation in n-type Bi2Te3/gr...
International audienceThe enhancement of thermoelectric figure of merit ZT requires to either increa...
Thermoelectric figures of merit of ZT ≈ 0.4 at room temperature were achieved in nanostructured comp...
Cu2SnSe3 material is regarded as a potential thermoelectric material due to its relatively high carr...
Thermoelectric materials enable the direct conversion between heat and electricity, offering a susta...
The concept of nanocomposite/nanostructuring in thermoelectric materials has been proven to be an ef...
Thermoelectric materials, which can change the waste heat into the usable electricity, are intereste...
The thermoelectric hetero nano region, as a new strategy, can effectively modulate the electrical an...
Thermoelectric figures of merit of ZT ≈ 0.4 at room temperature were achieved in nanostructure...