Temperature-dependent transport properties of the recently discovered layered bismuth-rich tellurobromides BinTeBr (n = 2, 3) are investigated for the first time. Dense homogeneous polycrystalline specimens prepared for different electrical and thermal measurements were synthesized by a ball milling-based process. While the calculated electronic structure classifies Bi2TeBr as a semimetal with a small electron pocket, its transport properties demonstrate a semiconductorlike behavior. Additional bismuth bilayers in the Bi3TeBr crystal structure strengthens the interlayer chemical bonding thus leading to metallic conduction. The thermal conductivity of the semiconducting compositions is low, and the electrical properties are sensitive to dopi...
A binary BiTe nanocompound for thermoelectric applications was prepared via a water-based chemical r...
Bismuth telluride-based (Bi2Te3) compounds have been attracting considerable attention for the appli...
Thermoelectrics directly converts waste heat into electricity and is considered a promising means of...
Temperature-dependent transport properties of the recently discovered layered bismuth-rich tellurobr...
Halogen substitution, that is, bromine for iodine, in the series of topological BinTeI (n = 1, 2, 3)...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
Bismuth telluride is the working material for most Peltier cooling devices and thermoelectric genera...
Thermoelectric transport properties (Seebeck coefficient, S, and electrical conductivity, σ) of p -t...
The majority of industrial, automobile processes, electrical appliances emit waste heat in the low-t...
Topological insulators have been considered as promising thermoelectric materials because of their h...
The concept of nanocomposite/nanostructuring in thermoelectric materials has been proven to be an ef...
N-type bismuth telluride sulfide has received attention as a potential thermoelectric material due t...
Bismuth telluride (Bi2Te3) exhibits a transition from p- to n-type conduction as a result of high-en...
Thermoelectric transport properties (Seebeck coefficient, S, and electrical conductivity, sigma) of ...
Halogen substitution, that is, bromine for iodine, in the series of topological Bi<sub><i>n</i></sub...
A binary BiTe nanocompound for thermoelectric applications was prepared via a water-based chemical r...
Bismuth telluride-based (Bi2Te3) compounds have been attracting considerable attention for the appli...
Thermoelectrics directly converts waste heat into electricity and is considered a promising means of...
Temperature-dependent transport properties of the recently discovered layered bismuth-rich tellurobr...
Halogen substitution, that is, bromine for iodine, in the series of topological BinTeI (n = 1, 2, 3)...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
Bismuth telluride is the working material for most Peltier cooling devices and thermoelectric genera...
Thermoelectric transport properties (Seebeck coefficient, S, and electrical conductivity, σ) of p -t...
The majority of industrial, automobile processes, electrical appliances emit waste heat in the low-t...
Topological insulators have been considered as promising thermoelectric materials because of their h...
The concept of nanocomposite/nanostructuring in thermoelectric materials has been proven to be an ef...
N-type bismuth telluride sulfide has received attention as a potential thermoelectric material due t...
Bismuth telluride (Bi2Te3) exhibits a transition from p- to n-type conduction as a result of high-en...
Thermoelectric transport properties (Seebeck coefficient, S, and electrical conductivity, sigma) of ...
Halogen substitution, that is, bromine for iodine, in the series of topological Bi<sub><i>n</i></sub...
A binary BiTe nanocompound for thermoelectric applications was prepared via a water-based chemical r...
Bismuth telluride-based (Bi2Te3) compounds have been attracting considerable attention for the appli...
Thermoelectrics directly converts waste heat into electricity and is considered a promising means of...