This dissertation presents a study of thermal and electrical transport phenomena in heterostructures of transition metal oxides, with specific interest in understanding and tailoring thermoelectricity in these systems. Thermoelectric energy conversion is a promising method for waste heat recovery and the efficiency of such an engine is directly related to a material dependent figure of merit, Z, given as S2σ/κ, where S is thermopower and σ and κ are electrical and thermal conductivity respectively. Achieving large figure of merit has been hampered by the coupling between these three thermoelectric coefficients, and the primary aim of this study is to understand the nature of thermoelectricity in complex oxides and identify mechanisms which ...
The development of thermoelectrics for high-temperature applications imposes several essential requi...
We report significant thermal conductivity reduction in oxygen-deficient lanthanum-doped strontium t...
We report significant thermal conductivity reduction in oxygen-deficient lanthanum-doped strontium t...
Recent demand for thermoelectric materials for power harvesting from automobile and industrial waste...
peer reviewedThermoelectric devices can help to tackle future challenges in the energy sector throug...
Thermoelectric energy conversion attracts increasing attention as a technology for effectively reusi...
Rapid progress in thermoelectric performance of oxide materials has been conducted virtually exclusi...
The emerging global energy shortage has intensified the need for clean energy such as biomass, wind ...
The direct energy conversion between heat and electricity based on thermoelectric effects is a topic...
The relevance of (bulk) transition-metal oxides for thermoelectric generation is discussed. A large ...
dissertationThermoelectric-based devices are promising in the area of energy generation, waste-heat ...
Thermoelectric materials convert a temperature difference into electricity through a phenomenon know...
Thermoelectric energy conversion is a promising method to convert (waste) heat into useful electrica...
Thermoelectric devices and lithium-ion batteries are among the fastest growing energy technologies. ...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
The development of thermoelectrics for high-temperature applications imposes several essential requi...
We report significant thermal conductivity reduction in oxygen-deficient lanthanum-doped strontium t...
We report significant thermal conductivity reduction in oxygen-deficient lanthanum-doped strontium t...
Recent demand for thermoelectric materials for power harvesting from automobile and industrial waste...
peer reviewedThermoelectric devices can help to tackle future challenges in the energy sector throug...
Thermoelectric energy conversion attracts increasing attention as a technology for effectively reusi...
Rapid progress in thermoelectric performance of oxide materials has been conducted virtually exclusi...
The emerging global energy shortage has intensified the need for clean energy such as biomass, wind ...
The direct energy conversion between heat and electricity based on thermoelectric effects is a topic...
The relevance of (bulk) transition-metal oxides for thermoelectric generation is discussed. A large ...
dissertationThermoelectric-based devices are promising in the area of energy generation, waste-heat ...
Thermoelectric materials convert a temperature difference into electricity through a phenomenon know...
Thermoelectric energy conversion is a promising method to convert (waste) heat into useful electrica...
Thermoelectric devices and lithium-ion batteries are among the fastest growing energy technologies. ...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
The development of thermoelectrics for high-temperature applications imposes several essential requi...
We report significant thermal conductivity reduction in oxygen-deficient lanthanum-doped strontium t...
We report significant thermal conductivity reduction in oxygen-deficient lanthanum-doped strontium t...