© 2019 American Chemical Society.A fundamental understanding of hot electron transport is critical for developing efficient hot-carrier-based solar cells. There have been significant efforts to enhance hot electron flux, and it has been found that a key factor affecting the hot electron flux is the lifetime of the hot electrons. Here, we report a combined study of hot electron flux and the lifetime of hot carriers using a perovskite-modified plasmonic nanodiode. We found that perovskite deposition on a plasmonic nanodiode can considerably improve hot electron generation induced by photon absorption. The perovskite plasmonic nanodiode consists of MAPbI3 layers covering a plasmonic-Au/TiO2 Schottky junction that is composed of randomly connec...
When an incident electromagnetic wave at optical frequencies couples to a metallic nanostructure, it...
Mixed organic-inorganic halide perovskites are an emerging photovoltaic technology that has the pote...
Energy conversion to generate hot electrons through the excitation of localized surface plasmon reso...
The enhancement of hot electron generation using plasmonic nanostructures is a promising strategy fo...
Energy conversion by the surface plasmon effect is considered a promising alternative to an effectiv...
The enhancement of hot electron generation using plasmonic nanostructures is a promising strategy fo...
Titanium dioxide (TiO2) nanotubes with vertically aligned array structures show substantial advantag...
[[abstract]]For semiconductors photosensitized with organic dyes or quantum dots, transferred electr...
Energy conversion from light to electricity mediated by hot electrons in a plasmonic metal nanostruc...
© The Royal Society of Chemistry.The use of metal nanoparticles, including Au, Ag, Cu, and Al, can i...
Au-TiO2-Ti nanodiodes with a metal-insulator-metal structure were used to probe hot electron flows g...
Among the various methods to advance solar cell technologies, the implementation of nanoparticles wi...
Energy dissipation at metal surfaces or interfaces between a metal and a dielectric generally result...
Facile fabrication and high performance are crucial for the commercialization of perovskite solar ce...
Energy conversion from light to electricity mediated by hot electrons in a plasmonic metal nanostruc...
When an incident electromagnetic wave at optical frequencies couples to a metallic nanostructure, it...
Mixed organic-inorganic halide perovskites are an emerging photovoltaic technology that has the pote...
Energy conversion to generate hot electrons through the excitation of localized surface plasmon reso...
The enhancement of hot electron generation using plasmonic nanostructures is a promising strategy fo...
Energy conversion by the surface plasmon effect is considered a promising alternative to an effectiv...
The enhancement of hot electron generation using plasmonic nanostructures is a promising strategy fo...
Titanium dioxide (TiO2) nanotubes with vertically aligned array structures show substantial advantag...
[[abstract]]For semiconductors photosensitized with organic dyes or quantum dots, transferred electr...
Energy conversion from light to electricity mediated by hot electrons in a plasmonic metal nanostruc...
© The Royal Society of Chemistry.The use of metal nanoparticles, including Au, Ag, Cu, and Al, can i...
Au-TiO2-Ti nanodiodes with a metal-insulator-metal structure were used to probe hot electron flows g...
Among the various methods to advance solar cell technologies, the implementation of nanoparticles wi...
Energy dissipation at metal surfaces or interfaces between a metal and a dielectric generally result...
Facile fabrication and high performance are crucial for the commercialization of perovskite solar ce...
Energy conversion from light to electricity mediated by hot electrons in a plasmonic metal nanostruc...
When an incident electromagnetic wave at optical frequencies couples to a metallic nanostructure, it...
Mixed organic-inorganic halide perovskites are an emerging photovoltaic technology that has the pote...
Energy conversion to generate hot electrons through the excitation of localized surface plasmon reso...