We examine the time-resolved resonance energy transfer of excitons from single n-butyl amine-bound, chloride-terminated nanocrystals to two-dimensional graphene through time-correlated single photon counting. The radiative biexponential lifetime kinetics and blinking statistics of the individual surface-modified nanocrystal elucidate the non-radiative decay channels. Blinking modification as well as a 4× reduction in spontaneous emission were observed with the short chloride and n-butylamine ligands, probing the energy transfer pathways for the development of graphene-nanocrystal nanophotonic devices
This dissertation describes the response of graphene and graphene fragments to ultrafast optical pul...
Electrically controlling resonant energy transfer of optical emitters provides a novel mechanism to ...
The near-field interaction between fluorescent emitters and graphene exhibits rich physics associate...
We examine the time-resolved resonance energy transfer of excitons from single n-butyl amine-bound, ...
A new class of optoelectronic nanodevices consisting of 0D semiconductor nanocrystals and 2D single ...
Excitonic energy transfer (ET) represents the primary step of energy conversion during photosynthesi...
Photoluminescence (PL) decay dynamics of multiexcitons in semiconductor nanocrystals (NCs) are domin...
Solution processed graphene variants including graphene oxide (GO) and reduced graphene oxide (RGO) ...
The near-field interaction between fluorescent emitters and graphene exhibits rich physics associate...
Excitation energy transfer is a long-lasting issue in the fields of photoscience and materials scien...
6 pags, 4 figsThe near-field interaction between fluorescent emitters and graphene exhibits rich phy...
By enhancing the photoluminescence from aligned seven-atom wide armchair-edge graphene nanoribbons u...
Cesium lead halide nanocrystals are a new attractive material for optoelectronic applications since ...
Radiative heat transfer is the mechanism by which objects, in absence of conduction and convection, ...
Fluorescence intermittency or blinking is observed in nearly all nanoscale fluorophores. It is chara...
This dissertation describes the response of graphene and graphene fragments to ultrafast optical pul...
Electrically controlling resonant energy transfer of optical emitters provides a novel mechanism to ...
The near-field interaction between fluorescent emitters and graphene exhibits rich physics associate...
We examine the time-resolved resonance energy transfer of excitons from single n-butyl amine-bound, ...
A new class of optoelectronic nanodevices consisting of 0D semiconductor nanocrystals and 2D single ...
Excitonic energy transfer (ET) represents the primary step of energy conversion during photosynthesi...
Photoluminescence (PL) decay dynamics of multiexcitons in semiconductor nanocrystals (NCs) are domin...
Solution processed graphene variants including graphene oxide (GO) and reduced graphene oxide (RGO) ...
The near-field interaction between fluorescent emitters and graphene exhibits rich physics associate...
Excitation energy transfer is a long-lasting issue in the fields of photoscience and materials scien...
6 pags, 4 figsThe near-field interaction between fluorescent emitters and graphene exhibits rich phy...
By enhancing the photoluminescence from aligned seven-atom wide armchair-edge graphene nanoribbons u...
Cesium lead halide nanocrystals are a new attractive material for optoelectronic applications since ...
Radiative heat transfer is the mechanism by which objects, in absence of conduction and convection, ...
Fluorescence intermittency or blinking is observed in nearly all nanoscale fluorophores. It is chara...
This dissertation describes the response of graphene and graphene fragments to ultrafast optical pul...
Electrically controlling resonant energy transfer of optical emitters provides a novel mechanism to ...
The near-field interaction between fluorescent emitters and graphene exhibits rich physics associate...