Antimony telluride (Sb2Te3) and its based alloys are of importance to p-type semiconductors for thermoelectric applications near room temperature. Herein, we report a simple, low-energy intensive, and scalable surfactant-assisted reflux method for the synthesis of Sb2Te3 nanoparticles in the solvent ethylene glycol (EG) at low temperatures (120-180 degrees C). The formation mechanism of platelike Sb2Te3 nanoparticles is proposed. Also, it is found that the size, shape, and chemical composition of the products could be controlled by the introduction of organic surfactants (CTAB, PVP, etc.) or inorganic salts (EDTA-Na-2, NaOH, etc.). Additionally, the collected Sb2Te3 nanoparticles were further fabricated into nanostructured pellets using col...
Waste heat is inevitably produced by all processes doing work. Home heating, automotive exhaust and ...
Engineering of thermoelectric materials through hybridization with nanoparticles has been proved eff...
With the event of nanotechnology, the field of thermoelectric (TE) materials has been re-invigorated...
Antimony telluride (Sb<sub>2</sub>Te<sub>3</sub>) and its based alloys are of importance to p-type s...
This project focuses on a novel solvothermal synthesis method of Antimony Telluride nanoplates in th...
Antimony telluride, (Sb2Te3), and its doped derivatives are considered to be among the best p-type t...
In this study, Sb2Te3 films were electrodeposited potentiostatically at room temperature from acidic...
A facile energy-saving route is developed for fabricating Sb2Te3-Te nanocomposites and nanosized Te ...
Thesis advisor: Zhifeng RenSolid-state cooling and power generation based on thermoelectric effects ...
Antimony telluride (Sb2 Te3 ) is an intermetallic compound crystallizing in a hexagonal lattice with...
A systematic study on the microwave-assisted thermolysis of the single source precursor (Et2Sb)2Te (...
The recent interest in wearable electronics suggests flexible thermoelectrics as candidates for the ...
Metal Chalcogenide nanostructures have been extensively implemented for high-performance thermoelect...
A systematic study of surfactant-assisted aqueous-based low-temperature chemical method for the synt...
Bismuth antimony telluride, Bi0.5Sb1.5Te3, is a prototype thermoelectric alloy for which nanostructu...
Waste heat is inevitably produced by all processes doing work. Home heating, automotive exhaust and ...
Engineering of thermoelectric materials through hybridization with nanoparticles has been proved eff...
With the event of nanotechnology, the field of thermoelectric (TE) materials has been re-invigorated...
Antimony telluride (Sb<sub>2</sub>Te<sub>3</sub>) and its based alloys are of importance to p-type s...
This project focuses on a novel solvothermal synthesis method of Antimony Telluride nanoplates in th...
Antimony telluride, (Sb2Te3), and its doped derivatives are considered to be among the best p-type t...
In this study, Sb2Te3 films were electrodeposited potentiostatically at room temperature from acidic...
A facile energy-saving route is developed for fabricating Sb2Te3-Te nanocomposites and nanosized Te ...
Thesis advisor: Zhifeng RenSolid-state cooling and power generation based on thermoelectric effects ...
Antimony telluride (Sb2 Te3 ) is an intermetallic compound crystallizing in a hexagonal lattice with...
A systematic study on the microwave-assisted thermolysis of the single source precursor (Et2Sb)2Te (...
The recent interest in wearable electronics suggests flexible thermoelectrics as candidates for the ...
Metal Chalcogenide nanostructures have been extensively implemented for high-performance thermoelect...
A systematic study of surfactant-assisted aqueous-based low-temperature chemical method for the synt...
Bismuth antimony telluride, Bi0.5Sb1.5Te3, is a prototype thermoelectric alloy for which nanostructu...
Waste heat is inevitably produced by all processes doing work. Home heating, automotive exhaust and ...
Engineering of thermoelectric materials through hybridization with nanoparticles has been proved eff...
With the event of nanotechnology, the field of thermoelectric (TE) materials has been re-invigorated...