The low efficiency and high price of thermoelectric semiconductors has generated interest in unconventional forms of thermoelectric materials. In this article, ionic thermoelectricity has been studied with commercial ion-exchange membranes for different aqueous 1:1 electrolytes. The theory of thermal membrane potential has been derived taking into account the ionic heats of transport, the non-isothermal Donnan potentials, the temperature polarization, and the thermally-induced concentration polarization of the electrolyte. Also the generated thermoelectric power has been experimentally studied. The experiments show good agreement with the theory, and suggest ways for systematic improvement of the system performance. (C) 2015 Elsevier B.V. A...
A thermoelectric cell is designed and experiments are carried out in order to measure Seebeck coeffi...
Looking at energy harvesting using body or waste heat for portable electronic or on-board devices, I...
Thermoelectric materials enable conversion of heat to electrical energy. The performance of electron...
By thermoelectric power generation we mean the creation of electrical power directly from a temperat...
By thermoelectric power generation we mean the creation of electrical power directly from a temperat...
By thermoelectric power generation we mean the creation of electrical power directly from a temperat...
A thermoelectric cell is designed and experiments are carried out in order to measure Seebeck coeffi...
The tremendous amount of wasted heat from solar radiation and industry dissipation has motivated the...
The tremendous amount of wasted heat from solar radiation and industry dissipation has motivated the...
The tremendous amount of wasted heat from solar radiation and industry dissipation has motivated the...
The tremendous amount of wasted heat from solar radiation and industry dissipation has motivated the...
Electrical membrane potential equations for liquid ion exchange membranes, characterized by the pres...
More than half of the waste heat rejected into the environment has temperatures lower than 100 °C, w...
In this thesis, the theory of classical non-equilibrium thermodynamics is used as a tool for the ana...
Looking at energy harvesting using body or waste heat for portable electronic or on-board devices, I...
A thermoelectric cell is designed and experiments are carried out in order to measure Seebeck coeffi...
Looking at energy harvesting using body or waste heat for portable electronic or on-board devices, I...
Thermoelectric materials enable conversion of heat to electrical energy. The performance of electron...
By thermoelectric power generation we mean the creation of electrical power directly from a temperat...
By thermoelectric power generation we mean the creation of electrical power directly from a temperat...
By thermoelectric power generation we mean the creation of electrical power directly from a temperat...
A thermoelectric cell is designed and experiments are carried out in order to measure Seebeck coeffi...
The tremendous amount of wasted heat from solar radiation and industry dissipation has motivated the...
The tremendous amount of wasted heat from solar radiation and industry dissipation has motivated the...
The tremendous amount of wasted heat from solar radiation and industry dissipation has motivated the...
The tremendous amount of wasted heat from solar radiation and industry dissipation has motivated the...
Electrical membrane potential equations for liquid ion exchange membranes, characterized by the pres...
More than half of the waste heat rejected into the environment has temperatures lower than 100 °C, w...
In this thesis, the theory of classical non-equilibrium thermodynamics is used as a tool for the ana...
Looking at energy harvesting using body or waste heat for portable electronic or on-board devices, I...
A thermoelectric cell is designed and experiments are carried out in order to measure Seebeck coeffi...
Looking at energy harvesting using body or waste heat for portable electronic or on-board devices, I...
Thermoelectric materials enable conversion of heat to electrical energy. The performance of electron...