Scalable synthetic strategies for high-quality and reproducible thermoelectric (TE) materials is an essential step for advancing the TE technology. We present here very rapid and effective methods for the synthesis of nanostructured bismuth telluride materials with promising TE performance. The methodology is based on an effective volume heating using microwaves, leading to highly crystalline nanostructured powders, in a reaction duration of two minutes. As the solvents, we demonstrate that water with a high dielectric constant is as good a solvent as ethylene glycol (EG) for the synthetic process, providing a greener reaction media. Crystal structure, crystallinity, morphology, microstructure and surface chemistry of these materials were e...
A systematic study of surfactant-assisted aqueous-based low-temperature chemical method for the synt...
In this study, Bi2Te3 nanostructures were synthesized with controlled morphologies by using a solvot...
Nanostructuring has been successfully employed to enhance the thermoelectric performance of Bi2Te3 d...
Scalable synthetic strategies for high-quality and reproducible thermoelectric (TE) materials is an ...
Bismuth telluride nanoparticles for thermoelectric applications were successfully prepared via a wat...
Nanostructuring of thermoelectric (TE) materials leads to improved energy conversion performance; ho...
We herein report on the large-scale synthesis of ultrathin Bi2Te3 nanoplates and subsequent spark pl...
Bismuth tellurium selenide (Bi2TeySe3-y) nanoparticles for thermoelectric applications are successfu...
We herein report on the large-scale synthesis of ultrathin Bi2Te3 nanoplates and subsequent spark pl...
We herein report on the large-scale synthesis of ultrathin Bi 2Te 3 nanoplates and subsequent spark ...
Bismuth antimony telluride, Bi0.5Sb1.5Te3, is a prototype thermoelectric alloy for which nanostructu...
We herein report on the large-scale synthesis of ultrathin Bi<sub>2</sub>Te<sub>3</sub> nanoplates a...
Chemical synthesis of bismuth telluride Bi2Te3 and other chalcogenide thermoelectric materials is po...
The bismuth telluride Bi2 Te3 nanostructure powders and pellet was successfully developed for t...
Thermoelectrics directly converts waste heat into electricity and is considered a promising means of...
A systematic study of surfactant-assisted aqueous-based low-temperature chemical method for the synt...
In this study, Bi2Te3 nanostructures were synthesized with controlled morphologies by using a solvot...
Nanostructuring has been successfully employed to enhance the thermoelectric performance of Bi2Te3 d...
Scalable synthetic strategies for high-quality and reproducible thermoelectric (TE) materials is an ...
Bismuth telluride nanoparticles for thermoelectric applications were successfully prepared via a wat...
Nanostructuring of thermoelectric (TE) materials leads to improved energy conversion performance; ho...
We herein report on the large-scale synthesis of ultrathin Bi2Te3 nanoplates and subsequent spark pl...
Bismuth tellurium selenide (Bi2TeySe3-y) nanoparticles for thermoelectric applications are successfu...
We herein report on the large-scale synthesis of ultrathin Bi2Te3 nanoplates and subsequent spark pl...
We herein report on the large-scale synthesis of ultrathin Bi 2Te 3 nanoplates and subsequent spark ...
Bismuth antimony telluride, Bi0.5Sb1.5Te3, is a prototype thermoelectric alloy for which nanostructu...
We herein report on the large-scale synthesis of ultrathin Bi<sub>2</sub>Te<sub>3</sub> nanoplates a...
Chemical synthesis of bismuth telluride Bi2Te3 and other chalcogenide thermoelectric materials is po...
The bismuth telluride Bi2 Te3 nanostructure powders and pellet was successfully developed for t...
Thermoelectrics directly converts waste heat into electricity and is considered a promising means of...
A systematic study of surfactant-assisted aqueous-based low-temperature chemical method for the synt...
In this study, Bi2Te3 nanostructures were synthesized with controlled morphologies by using a solvot...
Nanostructuring has been successfully employed to enhance the thermoelectric performance of Bi2Te3 d...