A facile and strategic junction tuning technology is reported to boost self-powered organic Schottky photodiode (OPD) performances by synergetic contributions of reactive dedoping effects. It is shown that dedoping poly(3-hexylthiophene-2,5-diyl) (P3HT) films with 1-propylamine (PA) solution significantly reduces not only acceptor-defect density but also intrinsic doping level, leading to dramatically enlarged depletion width of metal/polymer Schottky junctions, as confirmed by ultraviolet photoelectron spectroscopy and Mott–Schottky junction analyses. As a result, whole penetration regions of photons corresponding to absorption bands of P3HT can be fully covered by the depletion region of Schottky junctions, even without the assistance of...
\u3cp\u3eMinimizing the reverse bias dark current while retaining external quantum efficiency is cru...
Organic electronics promise to provide flexible, large-area circuitry such as photovoltaics, display...
This paper reports the potential application of cadmium selenide (CdSe) quantum dots (QDs) in improv...
Although doping is a cornerstone of the inorganic semiconductor industry, most devices using organic...
We report a trap-assisted photomultiplication (PM) phenomenon in solution-processed polymer photodet...
This thesis describes the fabrication and electrical characterization of Schottky diodes based on th...
Semiconducting polymers are promising materials for next-generation, flexible electronics devices. O...
A series of photomultiplication (PM)-type polymer photodetectors (PPDs) were fabricated with polymer...
We demonstrate new approaches to the characterization of oxidized regioregular poly(3-hexylthiophen...
The ability of a light‐sensor to detect fast variation in incident light intensity is a vital featur...
Organic semiconductors are gaining increasing attention as promising active materials in aqueous ele...
One of the remaining keys to the success of polymer electronics is the ability to systematically pat...
The ability of a light-sensor to detect fast variation in incident light intensity is a vital featur...
Organic electronics promise to provide flexible, large-area circuitry such as photovoltaics, display...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
\u3cp\u3eMinimizing the reverse bias dark current while retaining external quantum efficiency is cru...
Organic electronics promise to provide flexible, large-area circuitry such as photovoltaics, display...
This paper reports the potential application of cadmium selenide (CdSe) quantum dots (QDs) in improv...
Although doping is a cornerstone of the inorganic semiconductor industry, most devices using organic...
We report a trap-assisted photomultiplication (PM) phenomenon in solution-processed polymer photodet...
This thesis describes the fabrication and electrical characterization of Schottky diodes based on th...
Semiconducting polymers are promising materials for next-generation, flexible electronics devices. O...
A series of photomultiplication (PM)-type polymer photodetectors (PPDs) were fabricated with polymer...
We demonstrate new approaches to the characterization of oxidized regioregular poly(3-hexylthiophen...
The ability of a light‐sensor to detect fast variation in incident light intensity is a vital featur...
Organic semiconductors are gaining increasing attention as promising active materials in aqueous ele...
One of the remaining keys to the success of polymer electronics is the ability to systematically pat...
The ability of a light-sensor to detect fast variation in incident light intensity is a vital featur...
Organic electronics promise to provide flexible, large-area circuitry such as photovoltaics, display...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
\u3cp\u3eMinimizing the reverse bias dark current while retaining external quantum efficiency is cru...
Organic electronics promise to provide flexible, large-area circuitry such as photovoltaics, display...
This paper reports the potential application of cadmium selenide (CdSe) quantum dots (QDs) in improv...