We report reversible and spectrally selective fluorescence quenching of quantum dots (QDs) placed in close proximity to graphene. Controlling interband electronic transitions of graphene via electrostatic gating greatly modifies the fluorescence lifetime and intensity of nearby QDs via blocking of the nonradiative energy transfer between QDs and graphene. Using ionic liquid (IL) based electrolyte gating, we are able to control Fermi energy of graphene in the order of 1 eV, which yields electrically controllable fluorescence quenching of QDs in the visible spectrum. Indeed, our technique enables us to perform voltage controllable spectral selectivity among quantum dots at different emission wavelengths. We anticipate that our technique will ...
With exceptional electronic and gate-tunable optical properties, graphene provides new possibilities...
A ratiometric fluorescence sensor has been constructed through mixing amine graphene quantum dots (a...
Graphene quantum dots (GQDs) have emerged as a new class of superior fluorescent materials owing to ...
With exceptional electronic and gate-tunable optical properties, graphene provides new possibilities...
Despite the many fascinating discoveries of fundamental significance and device applications involvi...
Despite the many fascinating discoveries of fundamental significance and device applications involvi...
With exceptional electronic and gate-tunable optical properties, graphene provides new possibilities...
Monitoring cellular redox homeostasis is critical to the understanding of many physiological functio...
Recently, graphene has gained much attention because of its unique optical, mechanical, electrical, ...
Smart functional nanomaterials colorimetrically responsive to all-pH and a wide temperature range ar...
A band gap tuning of environmental-friendly graphene quantum dot (GQD) becomes a keen interest for n...
Electrically controlling resonant energy transfer of optical emitters provides a novel mechanism to ...
Graphene quantum dots (GQDs) are a kind of 0D material with characteristics derived from both graphe...
Cancer remains a major cause of morbidity and mortality around the world. Improved cancer treatment ...
[EN] Graphene sheets quench the singlet and triplet excited states of a series of six photochemical ...
With exceptional electronic and gate-tunable optical properties, graphene provides new possibilities...
A ratiometric fluorescence sensor has been constructed through mixing amine graphene quantum dots (a...
Graphene quantum dots (GQDs) have emerged as a new class of superior fluorescent materials owing to ...
With exceptional electronic and gate-tunable optical properties, graphene provides new possibilities...
Despite the many fascinating discoveries of fundamental significance and device applications involvi...
Despite the many fascinating discoveries of fundamental significance and device applications involvi...
With exceptional electronic and gate-tunable optical properties, graphene provides new possibilities...
Monitoring cellular redox homeostasis is critical to the understanding of many physiological functio...
Recently, graphene has gained much attention because of its unique optical, mechanical, electrical, ...
Smart functional nanomaterials colorimetrically responsive to all-pH and a wide temperature range ar...
A band gap tuning of environmental-friendly graphene quantum dot (GQD) becomes a keen interest for n...
Electrically controlling resonant energy transfer of optical emitters provides a novel mechanism to ...
Graphene quantum dots (GQDs) are a kind of 0D material with characteristics derived from both graphe...
Cancer remains a major cause of morbidity and mortality around the world. Improved cancer treatment ...
[EN] Graphene sheets quench the singlet and triplet excited states of a series of six photochemical ...
With exceptional electronic and gate-tunable optical properties, graphene provides new possibilities...
A ratiometric fluorescence sensor has been constructed through mixing amine graphene quantum dots (a...
Graphene quantum dots (GQDs) have emerged as a new class of superior fluorescent materials owing to ...