This project was designed to investigate the antimony content effect and nickel doping effect on the electrical properties of Ni-doped CoSb3 ( Ni1.25Co2.75Sb12) nanostructures. The purpose was to study the mechanism and to optimize the antimony content in the nanostructure to improve the thermoelectric performance. Ni-doped CoSb3 nanoparticles were synthesized using a modified polyol process with three different initial molar ratio of (Ni + Co) : Sb as 1:4.5, 1:4.75, and 1:5 respectively. Upon successful synthesis and hot pressing of the samples, they were characterized using various techniques. SEM, EDX, and XRD together with the measured electrical parameters obtained from standard four probe testing were analyzed and compared. The res...
This study explores the possibility of somewhat decoupling the electrical and thermal conduction, th...
International audienceIn this work, Ag doped CoSb3 thin films were grown directly on the heated subs...
Thermoelectric materials are solid state devices having the capability to convert heat to electrical...
Researchers have renewed interests in high performance thermoelectric materials in recent years. New...
Effects of adding excess antimony during the polyol process for synthesizing CoSb3 compound have bee...
Thermoelectric materials can convert heat into electricity and vice versa for use as power generator...
Investigations on high performance thermoelectric materials have recently been an attractive area of...
CoSb3 nanocomposites with different contents of CoSb3 nanoparticles were prepared by mixing nanosiz...
International audienceSkutterudite CoSb3 material exhibits excellent thermoelectric properties for t...
In this project, nano powder of CoSb3 thermoelectric material was synthesized using chemical alloyin...
In an effort to further understand the influence of Nd on the thermoelectric properties of the bina...
The Skutterudites CoSb3 material has been the focus of research for the conversion applications of w...
CoSb3 with its high electrical conductivity, Seebeck coefficient and rather low thermal conductivity...
International audienceSkutterudite CoSb3 has emerged as one of the most studied candidate materials ...
We have investigated the influence of nickel doping in a series of n-type CoSb3 skutterudite materia...
This study explores the possibility of somewhat decoupling the electrical and thermal conduction, th...
International audienceIn this work, Ag doped CoSb3 thin films were grown directly on the heated subs...
Thermoelectric materials are solid state devices having the capability to convert heat to electrical...
Researchers have renewed interests in high performance thermoelectric materials in recent years. New...
Effects of adding excess antimony during the polyol process for synthesizing CoSb3 compound have bee...
Thermoelectric materials can convert heat into electricity and vice versa for use as power generator...
Investigations on high performance thermoelectric materials have recently been an attractive area of...
CoSb3 nanocomposites with different contents of CoSb3 nanoparticles were prepared by mixing nanosiz...
International audienceSkutterudite CoSb3 material exhibits excellent thermoelectric properties for t...
In this project, nano powder of CoSb3 thermoelectric material was synthesized using chemical alloyin...
In an effort to further understand the influence of Nd on the thermoelectric properties of the bina...
The Skutterudites CoSb3 material has been the focus of research for the conversion applications of w...
CoSb3 with its high electrical conductivity, Seebeck coefficient and rather low thermal conductivity...
International audienceSkutterudite CoSb3 has emerged as one of the most studied candidate materials ...
We have investigated the influence of nickel doping in a series of n-type CoSb3 skutterudite materia...
This study explores the possibility of somewhat decoupling the electrical and thermal conduction, th...
International audienceIn this work, Ag doped CoSb3 thin films were grown directly on the heated subs...
Thermoelectric materials are solid state devices having the capability to convert heat to electrical...