Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of electronic energy and enables new functionalities of nanostructured materials with a huge application potential in photonics, optoelectronics, and photovoltaics. This is illustrated by impressive advances of quantum-dot solids based on nanocrystals (NCs) of direct bandgap materials, where this effect has been firmly established. Regretfully, the (resonant) energy transfer in close-packed ensembles of NCs remains elusive for silicon the main material for electronic and photovoltaic industries. This is the subject of the present study in which we conclusively demonstrate this process taking place in dense dispersions of Si NCs in an SiO2 matrix...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
Crystalline silicon is the most important semiconductor material in the electronics industry. Howeve...
Excitonic energy transfer (ET) represents the primary step of energy conversion during photosynthesi...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
We use time-resolved photoluminescence (PL) kinetics and PL intensity measurements to study the deca...
Time-resolved photoluminescence measurements of silicon nanocrystals formed by ion implantation of s...
Energy transfer between silicon (Si) nanocrystals (NCs) in Si-NC solids was demonstrated by photolum...
The brightness, large absorption cross-section and flexibility of colloidal nanocrystal quantum-dots...
Semiconductor Quantum Dots (QDs) are promising materials for photovoltaic applications because they ...
Cataloged from PDF version of article.We report enhanced sensitization of silicon through nonradiati...
We show enhanced transfer of excitons from the energy-gradient of bilayered green/red-emitting quant...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
Silicon is one of the most dominant materials in photovoltaics. To increase optical absorption of si...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
Crystalline silicon is the most important semiconductor material in the electronics industry. Howeve...
Excitonic energy transfer (ET) represents the primary step of energy conversion during photosynthesi...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
Energy exchange between closely packed semiconductor quantum dots allows for long-range transfer of ...
We use time-resolved photoluminescence (PL) kinetics and PL intensity measurements to study the deca...
Time-resolved photoluminescence measurements of silicon nanocrystals formed by ion implantation of s...
Energy transfer between silicon (Si) nanocrystals (NCs) in Si-NC solids was demonstrated by photolum...
The brightness, large absorption cross-section and flexibility of colloidal nanocrystal quantum-dots...
Semiconductor Quantum Dots (QDs) are promising materials for photovoltaic applications because they ...
Cataloged from PDF version of article.We report enhanced sensitization of silicon through nonradiati...
We show enhanced transfer of excitons from the energy-gradient of bilayered green/red-emitting quant...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
Silicon is one of the most dominant materials in photovoltaics. To increase optical absorption of si...
Carrier multiplication (CM) is an interesting fundamental phenomenon with application potential in o...
Crystalline silicon is the most important semiconductor material in the electronics industry. Howeve...
Excitonic energy transfer (ET) represents the primary step of energy conversion during photosynthesi...