We review recent advances in strongly correlated oxides as thermoelectric materials in pursuit of energy harvesting. We discuss two topics: one is the enhancement of the ordinary thermoelectric properties by controlling orbital degrees of freedom and orbital fluctuation not only in bulk but also at the interface of correlated oxides. The other topic is the use of new phenomena driven by spin-orbit coupling (SOC) of materials. In 5d electron oxides, we show some SOC-related transport phenomena, which potentially contribute to energy harvesting. We outline the current status and a future perspective of oxides as thermoelectric materials
This dissertation presents a study of thermal and electrical transport phenomena in heterostructures...
Band structure engineering for specific electronic or optical properties is essential for the furthe...
peer reviewedThermoelectric devices can help to tackle future challenges in the energy sector throug...
Recent demand for thermoelectric materials for power harvesting from automobile and industrial waste...
The strong correlated electronic materials we focused on this thesis are 5d transition metal oxides....
Materials’ design for high-performance thermoelectric oxides is discussed. Since chemical stability ...
Three major developments in three decades are quietly changing the whole spectrum of ‘electronics’ (...
Submitted to Nature Reviews MaterialsQuantum oxide materials possess a vast range of properties stem...
The relevance of (bulk) transition-metal oxides for thermoelectric generation is discussed. A large ...
Thermoelectrics represent a unique opportunity in energy to directly convert thermal energy or secon...
Heat is an abundant but often wasted source of energy. Thus, harvesting just a portion of this treme...
International audienceQuantum oxide materials possess a vast range of properties stemming from the i...
Oxide materials possess a vast range of functional properties, ranging from superconductivity to mul...
In complex transition-metal oxides, the interactions between the electronic spins, charges, and orbi...
Charge segregation is very common in correlated oxides, spanning from the extreme limit of the Mott ...
This dissertation presents a study of thermal and electrical transport phenomena in heterostructures...
Band structure engineering for specific electronic or optical properties is essential for the furthe...
peer reviewedThermoelectric devices can help to tackle future challenges in the energy sector throug...
Recent demand for thermoelectric materials for power harvesting from automobile and industrial waste...
The strong correlated electronic materials we focused on this thesis are 5d transition metal oxides....
Materials’ design for high-performance thermoelectric oxides is discussed. Since chemical stability ...
Three major developments in three decades are quietly changing the whole spectrum of ‘electronics’ (...
Submitted to Nature Reviews MaterialsQuantum oxide materials possess a vast range of properties stem...
The relevance of (bulk) transition-metal oxides for thermoelectric generation is discussed. A large ...
Thermoelectrics represent a unique opportunity in energy to directly convert thermal energy or secon...
Heat is an abundant but often wasted source of energy. Thus, harvesting just a portion of this treme...
International audienceQuantum oxide materials possess a vast range of properties stemming from the i...
Oxide materials possess a vast range of functional properties, ranging from superconductivity to mul...
In complex transition-metal oxides, the interactions between the electronic spins, charges, and orbi...
Charge segregation is very common in correlated oxides, spanning from the extreme limit of the Mott ...
This dissertation presents a study of thermal and electrical transport phenomena in heterostructures...
Band structure engineering for specific electronic or optical properties is essential for the furthe...
peer reviewedThermoelectric devices can help to tackle future challenges in the energy sector throug...