International audienceThin-film thermoelectrics (TEs) with a thickness of a few microns present an attractive opportunity to power the internet of things (IoT). Here, we propose screen printing as an industry-relevant technology to fabricate TE thin films from colloidal PbSe quantum dots (QDs). Monodisperse 13 nm-sized PbSe QDs with spherical morphology were synthesized through a straightforward heating-up method. The cubic-phase PbSe QDs with homogeneous chemical composition allowed the formulation of a novel ink to fabricate 2 μm-thick thin films through robust screen printing followed by rapid annealing. A maximum Seebeck coefficient of 561 μV K-1 was obtained at 143 °C and the highest electrical conductivity of 123 S m-1 was reached at ...
Bottom-up fabrication of thermoelectric (TE) materials from colloidal nanocrystal (NC) building bloc...
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...
International audienceThin-film thermoelectrics (TEs) with a thickness of a few microns present an a...
Thermoelectric power generation could be crucial in a sustainable energy future through waste heat e...
Thermoelectric power generation could be crucial in a sustainable energy future through waste heat e...
The development of paper-based sensors, antennas, and energy-harvesting devices can transform the wa...
The assembly of nanostructures into “multi”-dimensional materials is one of the main topics occurrin...
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...
This thesis describes the optical and electrical properties of colloidal PbS nanocrystals synthesize...
Printing techniques could offer a scalable approach to fabricate thermoelectric (TE) devices on flex...
Bottom-up fabrication of thermoelectric (TE) materials from colloidal nanocrystal (NC) building bloc...
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...
International audienceThin-film thermoelectrics (TEs) with a thickness of a few microns present an a...
Thermoelectric power generation could be crucial in a sustainable energy future through waste heat e...
Thermoelectric power generation could be crucial in a sustainable energy future through waste heat e...
The development of paper-based sensors, antennas, and energy-harvesting devices can transform the wa...
The assembly of nanostructures into “multi”-dimensional materials is one of the main topics occurrin...
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...
This thesis describes the optical and electrical properties of colloidal PbS nanocrystals synthesize...
Printing techniques could offer a scalable approach to fabricate thermoelectric (TE) devices on flex...
Bottom-up fabrication of thermoelectric (TE) materials from colloidal nanocrystal (NC) building bloc...
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...