Printing techniques could offer a scalable approach to fabricate thermoelectric (TE) devices on flexible substrates for power generation used in wearable devices and personalized thermo-regulation. However, typical printing processes need a large concentration of binder additives, which often render a detrimental effect on electrical transport of the printed TE layers. Here, we report scalable screen-printing of TE layers on flexible fiber glass fabrics, by rationally optimizing the printing inks consisting of TE particles (p-type Bi0.5Sb1.5Te3 or n-type Bi2Te2.7Se0.3), binders, and organic solvents. We identified a suitable binder additive, methyl cellulose, which offers suitable viscosity for printability at a very small concentration (0....
Flexible thermoelectric devices are attractive power sources for the growing demand of flexible elec...
Flexible thermoelectric devices are attractive power sources for the growing demand of flexible elec...
Flexible thermoelectric devices are attractive power sources for the growing demand of flexible elec...
Printing techniques could offer a scalable approach to fabricate thermoelectric (TE) devices on flex...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Thermoelectric materials and devices have garnered significant attention in recent years due to thei...
This paper presents the optimization of a bismuth tellurium (Bi1.8Te3.2)-antimony tellurium (Sb2Te3)...
Here, we present the shape-conformable thermoelectric materials geometrically to surfaces of any sha...
Screen printing allows for direct conversion of thermoelectric nanocrystals into flexible energy har...
Screen printing allows for direct conversion of thermoelectric nanocrystals into flexible energy har...
Output power of thermoelectric generators depends on device engineering minimizing heat loss as well...
An efficient, flexible power supply is in demand for the billion dollar wearable market. Thermoelect...
Flexible thermoelectric devices are attractive power sources for the growing demand of flexible elec...
Flexible thermoelectric devices are attractive power sources for the growing demand of flexible elec...
Flexible thermoelectric devices are attractive power sources for the growing demand of flexible elec...
Printing techniques could offer a scalable approach to fabricate thermoelectric (TE) devices on flex...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Thermoelectric materials and devices have garnered significant attention in recent years due to thei...
This paper presents the optimization of a bismuth tellurium (Bi1.8Te3.2)-antimony tellurium (Sb2Te3)...
Here, we present the shape-conformable thermoelectric materials geometrically to surfaces of any sha...
Screen printing allows for direct conversion of thermoelectric nanocrystals into flexible energy har...
Screen printing allows for direct conversion of thermoelectric nanocrystals into flexible energy har...
Output power of thermoelectric generators depends on device engineering minimizing heat loss as well...
An efficient, flexible power supply is in demand for the billion dollar wearable market. Thermoelect...
Flexible thermoelectric devices are attractive power sources for the growing demand of flexible elec...
Flexible thermoelectric devices are attractive power sources for the growing demand of flexible elec...
Flexible thermoelectric devices are attractive power sources for the growing demand of flexible elec...