In modern electronics and optoelectronics, hot electron behaviors are highly concerned, as they determine the performance limit of a device or system, like the associated thermal or power constraint of chips and the Shockley-Queisser limit for solar cell efficiency. To date, however, the manipulation of hot electrons has been mostly based on conceptual interpretations rather than a direct observation. The problem arises from a fundamental fact that energy-differential electrons are mixed up in real-space, making it hard to distinguish them from each other by standard measurements. Here we demonstrate a distinct approach to artificially (spatially) separate hot electrons from cold ones in semiconductor nanowire transistors, which thus offers...
Among the plethora of nano-objects, those conducting electricity attracted a great deal of attention...
Efficient hot electron generation in plasmonic nanostructures is of particular interest. Distinguish...
9 pags., 6 figs.There are currently extensive interests on the hot-electron-mediated photoconversion...
The dynamics of hot electrons are central to understanding the properties of many electronic devices...
Hot electron flux, generated by both incident light energy and the heat of the catalytic reaction, i...
Hot electron relaxation and transport in nanostructures involve a multitude of ultrafast processes w...
Energy dissipation at metal surfaces or interfaces between a metal and a dielectric generally result...
In optoelectronic devices such as solar cells and photodetectors, a portion of electron-hole pairs i...
The higher the energy of a particle is above equilibrium, the faster it relaxes because of the growi...
In modern electronics, understanding hot-electron kinetics along with related lattice heating on nan...
A pulse of high kinetic energy electrons can be generated after deposition of external energy to a m...
Using the excess energy of charge carriers excited above the band edge (hot carriers) could pave the...
When an incident electromagnetic wave at optical frequencies couples to a metallic nanostructure, it...
[[abstract]]For semiconductors photosensitized with organic dyes or quantum dots, transferred electr...
Conspectus Energy dissipation at surfaces and interfaces is mediated by excitation of elementary pro...
Among the plethora of nano-objects, those conducting electricity attracted a great deal of attention...
Efficient hot electron generation in plasmonic nanostructures is of particular interest. Distinguish...
9 pags., 6 figs.There are currently extensive interests on the hot-electron-mediated photoconversion...
The dynamics of hot electrons are central to understanding the properties of many electronic devices...
Hot electron flux, generated by both incident light energy and the heat of the catalytic reaction, i...
Hot electron relaxation and transport in nanostructures involve a multitude of ultrafast processes w...
Energy dissipation at metal surfaces or interfaces between a metal and a dielectric generally result...
In optoelectronic devices such as solar cells and photodetectors, a portion of electron-hole pairs i...
The higher the energy of a particle is above equilibrium, the faster it relaxes because of the growi...
In modern electronics, understanding hot-electron kinetics along with related lattice heating on nan...
A pulse of high kinetic energy electrons can be generated after deposition of external energy to a m...
Using the excess energy of charge carriers excited above the band edge (hot carriers) could pave the...
When an incident electromagnetic wave at optical frequencies couples to a metallic nanostructure, it...
[[abstract]]For semiconductors photosensitized with organic dyes or quantum dots, transferred electr...
Conspectus Energy dissipation at surfaces and interfaces is mediated by excitation of elementary pro...
Among the plethora of nano-objects, those conducting electricity attracted a great deal of attention...
Efficient hot electron generation in plasmonic nanostructures is of particular interest. Distinguish...
9 pags., 6 figs.There are currently extensive interests on the hot-electron-mediated photoconversion...