Due to the covalent character of silicon-carbon (Si-C) bond, C-linked molecules on the silicon quantum dot (SiQD) surface lead to dramatic changes in wavefunctions of the excited electron-hole pairs. Some of the optical transitions are strongly modified and attain direct bandgap-like character, giving rise to bright phonon-less fast decaying emission, while many other transitions keep their typical indirect bandgap character. It appears that in C-terminated SiQDs, with diameter larger than ~2 nm, the most efficient recombination occurs from states slightly above the ground state. This leads to thermal activation of the fast emission, dominating the photoluminescence from these SiQDs. On the other hand, in the smallest SiQDs of less than 2 n...
The optical properties of silicon quantum dots (QDs) embedded in a SiO2 matrix are investigated at v...
Silicon quantum dots (SiQDs) hold great promise for many future technologies. Silicon is already at ...
Crystalline silicon is the most important semiconductor material in the electronics industry. Howeve...
Due to the covalent character of silicon-carbon (Si-C) bond, C-linked molecules on the silicon quant...
Colloidal semiconductor quantum dots (QDs) constitute a perfect material for ink-jet printable large...
Colloidal semiconductor quantum dots (QDs) constitute a perfect material for ink-jet printable large...
Colloidal semiconductor quantum dots (QDs) constitute a perfect material for ink-jet printable large...
Colloidal semiconductor quantum dots (QDs) constitute a perfect material for ink-jet printable large...
The microscopic origin of the bright nanosecond blue-green photoluminescence (PL), frequently report...
The microscopic origin of the bright nanosecond blue-green photoluminescence (PL), frequently report...
The microscopic origin of the bright nanosecond blue-green photoluminescence (PL), frequently report...
The microscopic origin of the bright nanosecond blue-green photoluminescence (PL), frequently report...
The microscopic origin of the bright nanosecond blue-green photoluminescence (PL), frequently report...
We have studied the optical properties of silicon quantum dots (QDs) embedded in a silicon oxide mat...
Single-dot luminescence spectroscopy was used to study the emission linewidth of individual silicon ...
The optical properties of silicon quantum dots (QDs) embedded in a SiO2 matrix are investigated at v...
Silicon quantum dots (SiQDs) hold great promise for many future technologies. Silicon is already at ...
Crystalline silicon is the most important semiconductor material in the electronics industry. Howeve...
Due to the covalent character of silicon-carbon (Si-C) bond, C-linked molecules on the silicon quant...
Colloidal semiconductor quantum dots (QDs) constitute a perfect material for ink-jet printable large...
Colloidal semiconductor quantum dots (QDs) constitute a perfect material for ink-jet printable large...
Colloidal semiconductor quantum dots (QDs) constitute a perfect material for ink-jet printable large...
Colloidal semiconductor quantum dots (QDs) constitute a perfect material for ink-jet printable large...
The microscopic origin of the bright nanosecond blue-green photoluminescence (PL), frequently report...
The microscopic origin of the bright nanosecond blue-green photoluminescence (PL), frequently report...
The microscopic origin of the bright nanosecond blue-green photoluminescence (PL), frequently report...
The microscopic origin of the bright nanosecond blue-green photoluminescence (PL), frequently report...
The microscopic origin of the bright nanosecond blue-green photoluminescence (PL), frequently report...
We have studied the optical properties of silicon quantum dots (QDs) embedded in a silicon oxide mat...
Single-dot luminescence spectroscopy was used to study the emission linewidth of individual silicon ...
The optical properties of silicon quantum dots (QDs) embedded in a SiO2 matrix are investigated at v...
Silicon quantum dots (SiQDs) hold great promise for many future technologies. Silicon is already at ...
Crystalline silicon is the most important semiconductor material in the electronics industry. Howeve...