Results 1 to 10 of about 12,593 (247)
All organic homojunction PEDOT:PSS p–n diode [PDF]
AbstractIt is widely known that poly(3,4-ethylene dioxythiophene)-poly(styrenesulfonate) (PEDOT:PSS) is only a p-type material, and thus there is a challenge to fabricating all PEDOT:PSS based p–n device. Here, and for the first time, we introduce a new homojunction p–n diode device based solely on PEDOT:PSS thin films.
Samar Aboulhadeed +2 more
openalex +4 more sources
Counterion Effects of Protic Ionic Liquids on the Conductivity and Stretchability of Free-Standing PEDOT:PSS Films [PDF]
Le T +4 more
europepmc +2 more sources
Processing optimization of PEDOT:PSS and PEDOT:PSS/Tween 80 films
AbstractThe optimum processing conditions for PEDOT:PSS and PEDOT:PSS/Tween 80 cast films were investigated by considering film quality and resistivity. The thermal stabilities of these materials were found to strongly influence the accessible annealing temperatures, especially in the presence of the conductivity-enhancing agent Tween 80.
Joseph L. Carter +2 more
openaire +1 more source
Pure PEDOT:PSS hydrogels [PDF]
AbstractHydrogels of conducting polymers, particularly poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS), provide a promising electrical interface with biological tissues for sensing and stimulation, owing to their favorable electrical and mechanical properties.
Baoyang Lu +6 more
openaire +3 more sources
Halide Perovskite Precursors Dope PEDOT:PSS
AbstractHalide perovskite semiconductors find use in a broad range of optoelectronic applications including photovoltaic solar cells and light‐emitting diodes. In such devices the semiconductor is sandwiched in between interlayers for charge transport, extraction, or injection.
Sandrez, Simon +7 more
openaire +1 more source
Review on PEDOT:PSS-Based Conductive Fabric
This article reviews conductive fabrics made with the conductive polymer poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS), their fabrication techniques, and their applications. PEDOT:PSS has attracted interest in smart textile technology due to its relatively high electrical conductivity, water dispersibility, ease of manufacturing ...
Fahad Alhashmi Alamer +11 more
openaire +3 more sources
Highly stable PEDOT:PSS electrochemical transistors [PDF]
Organic electrochemical transistors (OECTs) are a burgeoning biosensing transducer platform due to their intrinsic amplification, high transconductance, and biocompatibility. To be successful in real world biosensing applications, however, stable performance should be demonstrated to avoid false analyte readings that could lead to dangerous ...
Sophia L Bidinger +3 more
openaire +2 more sources
Abstract PEDOT:PSS/Au/PEDOT:PSS multilayer films were successfully prepared and investigated. The PEDOT:PSS and Au layers were prepared using spin coating and DC sputtering, respectively. The thickness of the Au layer was varied within the range of 2–10 nm to investigate its impact on the resulting multilayer films.
Supphadate Sujinnapram +7 more
openaire +1 more source
Enhancement of Thermoelectric Properties of PEDOT:PSS and Tellurium-PEDOT:PSS Hybrid Composites by Simple Chemical Treatment [PDF]
AbstractThe thermoelectric properties of poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) and tellurium-PEDOT:PSS (Te-PEDOT:PSS) hybrid composites were enhanced via simple chemical treatment. The performance of thermoelectric materials is determined by their electrical conductivity, thermal conductivity and Seebeck coefficient ...
Bae, Eun Jin +3 more
openaire +3 more sources
Understanding the Capacitance of PEDOT:PSS [PDF]
Poly(3,4‐ethylenedioxythiophene):polystyrene sulfonate (PEDOT:PSS) is the most studied and explored mixed ion‐electron conducting polymer system. PEDOT:PSS is commonly included as an electroactive conductor in various organic devices, e.g., supercapacitors, displays, transistors, and energy‐converters.
Anton V. Volkov +9 more
openaire +3 more sources

