Luminescent lanthanide labels (LLLs) and semiconductor quantum dots (QDs) are two very special classes of (at least partially) inorganic fluorophores, which provide unique properties for Förster resonance energy transfer (FRET). FRET is an energy-transfer process between an excited donor fluorophore and a ground-state acceptor fluorophore in close proximity (approximately 1–20 nm), and therefore it is extremely well suited for biosensing applications in optical spectroscopy and microscopy. Within this cogent review, we will outline the main photophysical advantages of LLLs and QDs and their special properties for FRET. We will then focus on some recent applications from the FRET biosensing literature using LLLs as donors and QDs as donors ...
The combination of semiconductor quantum dots (QDs) and Förster resonance energy transfer (FRET) is...
CdSe/ZnS core/shell quantum dots (QDs) are used as efficient Förster Resonance Energy Transfer ...
Time-gated Förster resonance energy transfer (FRET) using the unique material combination of long-li...
Luminescent lanthanide labels (LLLs) and semiconductor quantum dots (QDs) are two very special class...
Forster resonance energy transfer (FRET) between lanthanide ion complexes (L) acting as donors and l...
The unique photophysical properties of semiconductor quantum dot (QD) bioconjugates offer many advan...
International audienceThe analysis of biomolecular interactions using quantum dots (QDs) as both FRE...
Förster (or fluorescence) resonance energy transfer amongst semiconductor quantum dots (QDs) is revi...
Förster (or fluorescence) resonance energy transfer amongst semiconductor quantum dots (QDs) is revi...
Quantum dots (QDs) are common as luminescing markers for imaging in biological applications because ...
The unique optical properties of quantum dots (QDs) have been widely used to develop bioassays based...
Förster resonance energy transfers (FRET) are based on the nonradiative transfer of energy between a...
A plethora of semiconductor quantum dot (QD)-based probes that rely on Förster resonance energy tra...
Combining high sensitivity with simultaneous analysis of numerous biomarkers (multiplexing) is an es...
Semiconductor nanocrystals (quantum dots - QDs) possess unique photophysical properties that make th...
The combination of semiconductor quantum dots (QDs) and Förster resonance energy transfer (FRET) is...
CdSe/ZnS core/shell quantum dots (QDs) are used as efficient Förster Resonance Energy Transfer ...
Time-gated Förster resonance energy transfer (FRET) using the unique material combination of long-li...
Luminescent lanthanide labels (LLLs) and semiconductor quantum dots (QDs) are two very special class...
Forster resonance energy transfer (FRET) between lanthanide ion complexes (L) acting as donors and l...
The unique photophysical properties of semiconductor quantum dot (QD) bioconjugates offer many advan...
International audienceThe analysis of biomolecular interactions using quantum dots (QDs) as both FRE...
Förster (or fluorescence) resonance energy transfer amongst semiconductor quantum dots (QDs) is revi...
Förster (or fluorescence) resonance energy transfer amongst semiconductor quantum dots (QDs) is revi...
Quantum dots (QDs) are common as luminescing markers for imaging in biological applications because ...
The unique optical properties of quantum dots (QDs) have been widely used to develop bioassays based...
Förster resonance energy transfers (FRET) are based on the nonradiative transfer of energy between a...
A plethora of semiconductor quantum dot (QD)-based probes that rely on Förster resonance energy tra...
Combining high sensitivity with simultaneous analysis of numerous biomarkers (multiplexing) is an es...
Semiconductor nanocrystals (quantum dots - QDs) possess unique photophysical properties that make th...
The combination of semiconductor quantum dots (QDs) and Förster resonance energy transfer (FRET) is...
CdSe/ZnS core/shell quantum dots (QDs) are used as efficient Förster Resonance Energy Transfer ...
Time-gated Förster resonance energy transfer (FRET) using the unique material combination of long-li...