Thermoelectric generator, which converts heat into electrical energy, has great potential to power portable devices. Nevertheless, the efficiency of a thermoelectric generator suffers due to inefficient thermoelectric material performance. In the last two decades, the performance of inorganic thermoelectric materials has been significantly advanced through rigorous efforts and novel techniques. In this review, major issues and recent advancements that are associated with the efficiency of inorganic thermoelectric materials are encapsulated. In addition, miscellaneous optimization strategies, such as band engineering, energy filtering, modulation doping, and low dimensional materials to improve the performance of inorganic thermoelectric mat...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
A big research effort is currently dedicated to the development of thermoelectric devices capable of...
Development of new thermoelectric materials has been rapid in past few years. The goal of the work a...
Thermoelectric devices convert temperature gradients into electrical power and vice versa, thus enab...
Thermoelectric (TE) materials have undergone revolutionary progress over the last 20 years. The ther...
Thermo-electricity offers an elegant solution to the problem of heat-to-electricity conversion. As a...
Direct conversion of heat into electricity through advanced thermoelectric (TE) materials has been o...
With thermoelectric materials it is possible to convert a difference in temperature into electrical ...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Arrays of freestanding Si nanowires have been fabricated by electron beam lithography, low-damage d...
With thermoelectric materials it is possible to convert a difference in temperature into electrical ...
Thermoelectric materials could play an increasing role for the efficient use of energy resources and...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Nanostructured materials can be used to improve the performance of thermoelectric materials. The the...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
A big research effort is currently dedicated to the development of thermoelectric devices capable of...
Development of new thermoelectric materials has been rapid in past few years. The goal of the work a...
Thermoelectric devices convert temperature gradients into electrical power and vice versa, thus enab...
Thermoelectric (TE) materials have undergone revolutionary progress over the last 20 years. The ther...
Thermo-electricity offers an elegant solution to the problem of heat-to-electricity conversion. As a...
Direct conversion of heat into electricity through advanced thermoelectric (TE) materials has been o...
With thermoelectric materials it is possible to convert a difference in temperature into electrical ...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Arrays of freestanding Si nanowires have been fabricated by electron beam lithography, low-damage d...
With thermoelectric materials it is possible to convert a difference in temperature into electrical ...
Thermoelectric materials could play an increasing role for the efficient use of energy resources and...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Nanostructured materials can be used to improve the performance of thermoelectric materials. The the...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
A big research effort is currently dedicated to the development of thermoelectric devices capable of...