Band structure engineering has a strong beneficial impact on thermoelectric performance, where theoretical methods dominate the investigation of electronic structures. Here, we use angle-resolved photoemission spectroscopy (ARPES) to analyze the electronic structure and report on the thermoelectric transport properties of half-Heusler TiCoSb high-quality single crystals. High degeneracy of the valence bands at the L and Gamma band maximum points was observed, which provides a band-convergence scenario for the thermoelectric performance of TiCoSb. Previous efforts have shown how crystallographic defects play an important role in TiCoSb transport properties, while the intrinsic properties remain elusive. Using hard X-ray photoelectron spectro...
Understanding and manipulation of the band structure are important in designing high-performance the...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...
The entanglement of lattice thermal conductivity, electrical conductivity, and Seebeck coefficient c...
Band structure engineering has a strong beneficial impact on thermoelectric performance, where theor...
Band engineering is a promising approach that proved successful in enhancing the thermoelectric perf...
Further advancements in thermoelectric technology rely on the capacity to control both electrical an...
Half-Heuslers (HHs) are promising thermoelectric materials with great compositional flexibility. Her...
Abstract Accurate determination of the intrinsic electronic structure of thermoelectric materials is...
Half-Heuslers with vacancies that are stabilised by a semiconducting electron count offer new opport...
Thermoelectric materials have demanded a significant amount of attention for their ability to conver...
Searching for high-performance thermoelectric (TE) materials in the paradigm of narrow-bandgap semic...
Half-Heusler compounds have a possibility as a new thermoelectric material due to the large thermoel...
Semiconducting half and, to a lesser extent, full Heusler compounds are promising thermoelectric mat...
The charge transport properties of the low-dimensional thermoelectric materials K2Bi8-xSbxSe13 (02Bi...
Modern society relies on high charge mobility for efficient energy production and fast information t...
Understanding and manipulation of the band structure are important in designing high-performance the...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...
The entanglement of lattice thermal conductivity, electrical conductivity, and Seebeck coefficient c...
Band structure engineering has a strong beneficial impact on thermoelectric performance, where theor...
Band engineering is a promising approach that proved successful in enhancing the thermoelectric perf...
Further advancements in thermoelectric technology rely on the capacity to control both electrical an...
Half-Heuslers (HHs) are promising thermoelectric materials with great compositional flexibility. Her...
Abstract Accurate determination of the intrinsic electronic structure of thermoelectric materials is...
Half-Heuslers with vacancies that are stabilised by a semiconducting electron count offer new opport...
Thermoelectric materials have demanded a significant amount of attention for their ability to conver...
Searching for high-performance thermoelectric (TE) materials in the paradigm of narrow-bandgap semic...
Half-Heusler compounds have a possibility as a new thermoelectric material due to the large thermoel...
Semiconducting half and, to a lesser extent, full Heusler compounds are promising thermoelectric mat...
The charge transport properties of the low-dimensional thermoelectric materials K2Bi8-xSbxSe13 (02Bi...
Modern society relies on high charge mobility for efficient energy production and fast information t...
Understanding and manipulation of the band structure are important in designing high-performance the...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...
The entanglement of lattice thermal conductivity, electrical conductivity, and Seebeck coefficient c...