The direct conversion of concentrated high temperature solar heat into electrical energy was demonstrated with a series of four–leg thermoelectric oxide modules (TOM). These temperature stable modules were not yet optimized for high efficiency conversion, but served as proof-of-principle for high temperature conversion. They were constructed by connecting two p- (La1.98Sr0.02CuO4) and two n-type (CaMn0.98Nb0.02O3) thermoelements electrically in series and thermally in parallel. The temperature gradient ΔT was applied by a High–Flux Solar Simulator source (HFSS) which generates a spectrum similar to solar radiation. The influence of the graphite layer coated on the hot side of the Al2O3 substrate compared to the uncoated surface on ΔT, Pmax ...
The present work reports thefirst attempt of thermoelectric module design, based on oxide materials ...
Thermoelectric (TE) technology allows direct production of electrical energy from waste heat and na...
The final goal of this project is to produce, by the end of Phase II, an all ceramic high temperatur...
The direct conversion of concentrated high temperature solar heat into electrical energy was demonst...
Four-leg thermoelectric oxide modules (TOMs) consisting of two p-type (La1.98Sr0.02CuO4) and two n-t...
Abstract Thermoelectricity does not only serve to profitably recover waste heat from many technical ...
A heat transfer model that couples radiation/conduction/convection heat transfer with electrical pot...
materials With the growing public interest in environmental problems in recent years, the importance...
Novel thermoelectric oxides were developed, produced, and characterized to demonstrate their promisi...
The thermionic-thermoelectric solid-state technology, characterized by solar-to-electric conversion ...
This work seeks possibilities for advancing the thermoelectric oxide technology by exploring a modul...
High performance thermoelectric materials in a wide range of temperatures are essential to broaden t...
The efficient usage of energy at all stages along the energy supply chain and the utilization of ren...
A thermoelectric generator is a solid-state device that converts a heat flux into electri-cal power ...
The field of thermoelectricity began in the early 1800s with the discovery of the thermoelectric eff...
The present work reports thefirst attempt of thermoelectric module design, based on oxide materials ...
Thermoelectric (TE) technology allows direct production of electrical energy from waste heat and na...
The final goal of this project is to produce, by the end of Phase II, an all ceramic high temperatur...
The direct conversion of concentrated high temperature solar heat into electrical energy was demonst...
Four-leg thermoelectric oxide modules (TOMs) consisting of two p-type (La1.98Sr0.02CuO4) and two n-t...
Abstract Thermoelectricity does not only serve to profitably recover waste heat from many technical ...
A heat transfer model that couples radiation/conduction/convection heat transfer with electrical pot...
materials With the growing public interest in environmental problems in recent years, the importance...
Novel thermoelectric oxides were developed, produced, and characterized to demonstrate their promisi...
The thermionic-thermoelectric solid-state technology, characterized by solar-to-electric conversion ...
This work seeks possibilities for advancing the thermoelectric oxide technology by exploring a modul...
High performance thermoelectric materials in a wide range of temperatures are essential to broaden t...
The efficient usage of energy at all stages along the energy supply chain and the utilization of ren...
A thermoelectric generator is a solid-state device that converts a heat flux into electri-cal power ...
The field of thermoelectricity began in the early 1800s with the discovery of the thermoelectric eff...
The present work reports thefirst attempt of thermoelectric module design, based on oxide materials ...
Thermoelectric (TE) technology allows direct production of electrical energy from waste heat and na...
The final goal of this project is to produce, by the end of Phase II, an all ceramic high temperatur...