Current solid-state thermoelectric converters have poor performance, which typically renders them useless for practical applications. This problem is evidenced by the small figures of merit of typical thermoelectric materials, which tend to be much smaller than 1. Increasing this parameter is then key for the development of functional devices in technologically viable applications that can work optimally. We propose here a feasible and effective design of new thermoelectric systems based on physical gaps in nanoscale junctions. We show that, depending on the type of features, i.e., the character of surface/edge states, on both sides of the gap, it is possible to achieve high figures of merit. In particular, we show that, for configurations ...
Although it was demonstrated that discrete molecular levels determine the sign and magnitude of the ...
We study the electronic states in topological nanowires of narrow-gap semiconductors, such as PbTe o...
Thermoelectric junctions are often made of components of different materials characterized by distin...
We show that the thermoelectric properties of nanoscale junctions featuring states near the Fermi le...
We focus on the theoretical approaches aimed to analyze thermoelectric properties at the nanoscale. ...
Thermoelectric devices possess enormous potential to reshape the global energy landscape by converti...
Thermoelectricity is an important topic in mesoscopic physics, and has been lately investigated in l...
Waste heat recovery from the human body provides opportunities to power electronics with a source th...
Heat from electrical devices, car engines, industrial processes and even our own body heat are an ab...
Thermoelectrics can directly harvest electricity from waste heat through the Seebeck effect, therefo...
Focus of the review is on experimental set-ups and theoretical proposals aimed to enhance thermoelec...
Although it was demonstrated that discrete molecular levels determine the sign and magnitude of the ...
Thermoelectrics can directly harvest electricity from waste heat through the Seebeck effect; therefo...
Thermoelectric devices have gained importance in recent years as viable solutions for applications s...
In this work, we aim to design a heterostructure-based nanoscale thermoelectric generator that can m...
Although it was demonstrated that discrete molecular levels determine the sign and magnitude of the ...
We study the electronic states in topological nanowires of narrow-gap semiconductors, such as PbTe o...
Thermoelectric junctions are often made of components of different materials characterized by distin...
We show that the thermoelectric properties of nanoscale junctions featuring states near the Fermi le...
We focus on the theoretical approaches aimed to analyze thermoelectric properties at the nanoscale. ...
Thermoelectric devices possess enormous potential to reshape the global energy landscape by converti...
Thermoelectricity is an important topic in mesoscopic physics, and has been lately investigated in l...
Waste heat recovery from the human body provides opportunities to power electronics with a source th...
Heat from electrical devices, car engines, industrial processes and even our own body heat are an ab...
Thermoelectrics can directly harvest electricity from waste heat through the Seebeck effect, therefo...
Focus of the review is on experimental set-ups and theoretical proposals aimed to enhance thermoelec...
Although it was demonstrated that discrete molecular levels determine the sign and magnitude of the ...
Thermoelectrics can directly harvest electricity from waste heat through the Seebeck effect; therefo...
Thermoelectric devices have gained importance in recent years as viable solutions for applications s...
In this work, we aim to design a heterostructure-based nanoscale thermoelectric generator that can m...
Although it was demonstrated that discrete molecular levels determine the sign and magnitude of the ...
We study the electronic states in topological nanowires of narrow-gap semiconductors, such as PbTe o...
Thermoelectric junctions are often made of components of different materials characterized by distin...