The marcasite structure FeSe<sub>2−δ</sub> was synthesized using a simple solvothermal method. Systematic study of the electrical transport properties shows that the transport is dominated by variable-range hopping (VRH), with a changeover from Mott VRH at higher temperature to Efros-Shklovskii VRH for temperatures lower than the width of the Coulomb gap. This also confirms the presence of a Coulomb gap in the density of states at the Fermi energy. We observe that Yttrium doping increases the electrical conductivity dramatically without significantly reducing the Seebeck coefficient. This results in remarkably high power factors for thermoelectric performance in the regime where the mean hopping energy shifts from defect dominated to Coulom...
Achieving a precise control of defects in chalcogenide semiconductors is paramount to optimizing the...
Electronic structure and thermoelectric properties of marcasite (m) and synthetic pyrite (p) phases ...
The superionic conductor Cu<sub>2−δ</sub>Se has been shown to be a promising thermoelectric at highe...
The marcasite structure FeSe2-delta was synthesized using a simple solvothermal method. Systematic s...
Some transition-metal dichalcogenides have been actively studied recently owing to their potential f...
Transition metal dichalcogenides attract considerable attention due to a variety of interesting prop...
Introducing structural defects such as vacancies, nanoprecipitates, and dislocations is a proven mea...
Abstract Thermoelectric properties are frequently manipulated by introducing point defects into a ma...
Introducing structural defects such as vacancies, nanoprecipitates, and dislocations is a proven mea...
Thermoelectric properties such as thermopower, electronic and thermal conductivity are governed by t...
We have carried out an investigation of the structural, magnetic, transport and superconducting prop...
Thermoelectric conversion technique, which can directly recover waste heat and convert it into elect...
Different families of thermoelectric materials have been investigated since the discovery of thermoe...
Thermoelectric power generation technology has emerged as a clean “heat engine” that can convert hea...
Introducing structural defects such as vacancies, nanoprecipitates, and dislocations is a proven mea...
Achieving a precise control of defects in chalcogenide semiconductors is paramount to optimizing the...
Electronic structure and thermoelectric properties of marcasite (m) and synthetic pyrite (p) phases ...
The superionic conductor Cu<sub>2−δ</sub>Se has been shown to be a promising thermoelectric at highe...
The marcasite structure FeSe2-delta was synthesized using a simple solvothermal method. Systematic s...
Some transition-metal dichalcogenides have been actively studied recently owing to their potential f...
Transition metal dichalcogenides attract considerable attention due to a variety of interesting prop...
Introducing structural defects such as vacancies, nanoprecipitates, and dislocations is a proven mea...
Abstract Thermoelectric properties are frequently manipulated by introducing point defects into a ma...
Introducing structural defects such as vacancies, nanoprecipitates, and dislocations is a proven mea...
Thermoelectric properties such as thermopower, electronic and thermal conductivity are governed by t...
We have carried out an investigation of the structural, magnetic, transport and superconducting prop...
Thermoelectric conversion technique, which can directly recover waste heat and convert it into elect...
Different families of thermoelectric materials have been investigated since the discovery of thermoe...
Thermoelectric power generation technology has emerged as a clean “heat engine” that can convert hea...
Introducing structural defects such as vacancies, nanoprecipitates, and dislocations is a proven mea...
Achieving a precise control of defects in chalcogenide semiconductors is paramount to optimizing the...
Electronic structure and thermoelectric properties of marcasite (m) and synthetic pyrite (p) phases ...
The superionic conductor Cu<sub>2−δ</sub>Se has been shown to be a promising thermoelectric at highe...