The coupling of surface plasmons and excitons in organic materials can improve the performance of organic optoelectronic devices. Here, we prepare carbon-dot-supported silver nanoparticles (CD-Ag nanoparticles) using the carbon dots both as a reducing agent and a template to fabricate solution-processable polymer light-emitting diodes and polymer solar cells. The surface plasmon resonance effect of CD-Ag nanoparticles allows significant radiative emission and additional light absorption, leading to remarkably enhanced current efficiency of 27.16 cd A-1 and a luminous efficiency of 18.54 lm W-1 in polymer light-emitting diodes as well as a power conversion efficiency of 8.31% and an internal quantum efficiency of 99% in polymer solar cells c...
We studied silver nanoparticles (Ag NPs) as an n-type dopant in the charge generation connector of ...
Improved optical absorption and photocurrent for polythiophene-fullerene bulk heterojunction photovo...
Using plasmonic interactions to engineer optical properties at the nanoscale is an important challen...
The coupling of surface plasmons and excitons in organic materials can improve the performance of or...
The coupling of surface plasmons and excitons in organic materials can improve the performance of or...
Organic optoelectronic devices including organic light-emitting diodes (OLEDs) and polymer solar cel...
The surface plasmon effect on polymer solar cells and polymer light-emitting diodes is demonstrated ...
Highly efficient ITO-free polymeric electronic devices were successfully demonstrated by replacement...
A nanocomposite of silver-nanoparticle-decorated graphene oxide (GO–Ag NPs), enhanced by the surface...
Hybrid nanoparticles composed of multiple components can offer unique opportunities for understandin...
In this study, plasmonic nanostructures were examined to enhance the light harvesting of organic thi...
We present a simple and versatile technique to introduce plasmonic silver nanoparticles into organic...
ABSTRACT: Improvement of light harvesting in semiconductor quantum dots (QDs) is essential for the d...
Plasmonic nanoparticles create large local electric field enhancements in organic photovoltaics (OPV...
The effect of noble metal nanoparticle (NP) synthesis method on the plasmonic enhancement of organic...
We studied silver nanoparticles (Ag NPs) as an n-type dopant in the charge generation connector of ...
Improved optical absorption and photocurrent for polythiophene-fullerene bulk heterojunction photovo...
Using plasmonic interactions to engineer optical properties at the nanoscale is an important challen...
The coupling of surface plasmons and excitons in organic materials can improve the performance of or...
The coupling of surface plasmons and excitons in organic materials can improve the performance of or...
Organic optoelectronic devices including organic light-emitting diodes (OLEDs) and polymer solar cel...
The surface plasmon effect on polymer solar cells and polymer light-emitting diodes is demonstrated ...
Highly efficient ITO-free polymeric electronic devices were successfully demonstrated by replacement...
A nanocomposite of silver-nanoparticle-decorated graphene oxide (GO–Ag NPs), enhanced by the surface...
Hybrid nanoparticles composed of multiple components can offer unique opportunities for understandin...
In this study, plasmonic nanostructures were examined to enhance the light harvesting of organic thi...
We present a simple and versatile technique to introduce plasmonic silver nanoparticles into organic...
ABSTRACT: Improvement of light harvesting in semiconductor quantum dots (QDs) is essential for the d...
Plasmonic nanoparticles create large local electric field enhancements in organic photovoltaics (OPV...
The effect of noble metal nanoparticle (NP) synthesis method on the plasmonic enhancement of organic...
We studied silver nanoparticles (Ag NPs) as an n-type dopant in the charge generation connector of ...
Improved optical absorption and photocurrent for polythiophene-fullerene bulk heterojunction photovo...
Using plasmonic interactions to engineer optical properties at the nanoscale is an important challen...