The requirement of a portable electron is functioning as a driving force for a wearable energy instrument. Poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS), as one of the most promising organic electron materials, has been widely studied in energy conversion devices. However, the efforts for PEDOT:PSS fibers are insufficient to boost the development of wearable thermoelectric energy harvesting. Here, a highly conductive p-type PEDOT:PSS fiber was produced by gelation process, which was 3 orders of magnitude higher than that of previous hydrogel fibers. Surprisingly, a post-treatment with organic solvents such as ethylene glycol and dimethyl sulfoxide tripled their electrical conductivity with an only 5% decreased Seebec...
Searching an effective method to enhance the thermoelectric properties of flexible organic films can...
A free-standing high-output power density polymeric thermoelectric (TE) device is realized based on ...
Owing to intrinsically high electrical conductivity and low thermoelectric conductivity, poly(3,4-et...
Thermal energy as an alternative renewable source of electricity can be used in a wide range of appl...
To realize thermoelectric textiles that can convert body heat to electricity, fibers with excellent ...
The full text of this article will not be available in ULIR until the embargo expires on the 23/09/2...
A thermoelectric wearable is proposed based on an innovative 3d wearable design, with p- type polyme...
Conducting polymers offer new opportunities to design soft, conformable and light-weight thermoelect...
Organic materials have attracted considerable attention for thermoelectric (TE) applications. Given ...
Herein, we demonstrate that a flexible, air-permeable, thermoelectric (TE) power generator can be pr...
Thermoelectric generators (TEGs) facilitate maintenance-free sustainable energy transduction, making...
Organic thermoelectric (TE) material receives increasing attention as a promising candidate for flex...
Searching an effective method to enhance the thermoelectric properties of flexible organic films can...
Wearable electronics, as a new form of ubiquitous technology, require a sustainable self-powering sy...
Polymer-based thermoelectric generators hold great appeal in the realm of wearable electronics as th...
Searching an effective method to enhance the thermoelectric properties of flexible organic films can...
A free-standing high-output power density polymeric thermoelectric (TE) device is realized based on ...
Owing to intrinsically high electrical conductivity and low thermoelectric conductivity, poly(3,4-et...
Thermal energy as an alternative renewable source of electricity can be used in a wide range of appl...
To realize thermoelectric textiles that can convert body heat to electricity, fibers with excellent ...
The full text of this article will not be available in ULIR until the embargo expires on the 23/09/2...
A thermoelectric wearable is proposed based on an innovative 3d wearable design, with p- type polyme...
Conducting polymers offer new opportunities to design soft, conformable and light-weight thermoelect...
Organic materials have attracted considerable attention for thermoelectric (TE) applications. Given ...
Herein, we demonstrate that a flexible, air-permeable, thermoelectric (TE) power generator can be pr...
Thermoelectric generators (TEGs) facilitate maintenance-free sustainable energy transduction, making...
Organic thermoelectric (TE) material receives increasing attention as a promising candidate for flex...
Searching an effective method to enhance the thermoelectric properties of flexible organic films can...
Wearable electronics, as a new form of ubiquitous technology, require a sustainable self-powering sy...
Polymer-based thermoelectric generators hold great appeal in the realm of wearable electronics as th...
Searching an effective method to enhance the thermoelectric properties of flexible organic films can...
A free-standing high-output power density polymeric thermoelectric (TE) device is realized based on ...
Owing to intrinsically high electrical conductivity and low thermoelectric conductivity, poly(3,4-et...