Energy levels in the band gap arising from surface states can dominate the optical and electronic properties of semiconductor nanocrystal quantum dots (QDs). Recent theoretical work has predicted that such trap states in II-VI and III-V QDs arise only from two-coordinated anions on the QD surface, offering the hypothesis that Lewis acid (Z-type) ligands should be able to completely passivate these anionic trap states. In this work, we provide experimental support for this hypothesis by demonstrating that Z-type ligation is the primary cause of PL QY increase when passivating undercoordinated CdTe QDs with various metal salts. Optimized treatments with InCl3 or CdCl2 afford a near-unity (>90%) photoluminescence quantum yield (PL QY), wher...
Many colloidal quantum dot (QD)-based devices involve charging of the QD, either via intentional ele...
Surface traps are ubiquitous to nanoscopic semiconductor materials. Understanding their atomistic or...
Surface chemistry modification of as-synthesized colloidal inorganic semiconductor nanocrystals (QDs...
Energy levels in the band gap arising from surface states can dominate the optical and electronic pr...
Energy levels in the band gap arising from surface states can dominate the optical and electronic pr...
High global demand for energy coupled with dwindling fossil fuel supply has driven the development o...
Colloidal quantum dots (CQDs) are promising materials for novel light sources and solar energy conve...
Trap states play a crucial role in the design of colloidal quantum dot (QD)-based technologies. The ...
Electronic traps at the inorganic–organic interface of colloidal quantum dots (QDs) are detrimental ...
Colloidal quantum dots (CQDs) are extremely promising as photovoltaic materials. In particular, the ...
Understanding and controlling the surface chemistry of colloidal quantum dots (QDs) are essential st...
Colloidal quantum dots (QDs) stand among the most attractive light-harvesting materials to be exploi...
We studied both cw and time-resolved photoluminescence of colloidal CdSe/ZnS core-shell quantum dots...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2016.Colloidal semiconductor nano...
Quantum dots (QDs) have drawn a special attention since recent past due to their properties such as ...
Many colloidal quantum dot (QD)-based devices involve charging of the QD, either via intentional ele...
Surface traps are ubiquitous to nanoscopic semiconductor materials. Understanding their atomistic or...
Surface chemistry modification of as-synthesized colloidal inorganic semiconductor nanocrystals (QDs...
Energy levels in the band gap arising from surface states can dominate the optical and electronic pr...
Energy levels in the band gap arising from surface states can dominate the optical and electronic pr...
High global demand for energy coupled with dwindling fossil fuel supply has driven the development o...
Colloidal quantum dots (CQDs) are promising materials for novel light sources and solar energy conve...
Trap states play a crucial role in the design of colloidal quantum dot (QD)-based technologies. The ...
Electronic traps at the inorganic–organic interface of colloidal quantum dots (QDs) are detrimental ...
Colloidal quantum dots (CQDs) are extremely promising as photovoltaic materials. In particular, the ...
Understanding and controlling the surface chemistry of colloidal quantum dots (QDs) are essential st...
Colloidal quantum dots (QDs) stand among the most attractive light-harvesting materials to be exploi...
We studied both cw and time-resolved photoluminescence of colloidal CdSe/ZnS core-shell quantum dots...
Thesis (Ph. D.)--University of Rochester. Department of Chemistry, 2016.Colloidal semiconductor nano...
Quantum dots (QDs) have drawn a special attention since recent past due to their properties such as ...
Many colloidal quantum dot (QD)-based devices involve charging of the QD, either via intentional ele...
Surface traps are ubiquitous to nanoscopic semiconductor materials. Understanding their atomistic or...
Surface chemistry modification of as-synthesized colloidal inorganic semiconductor nanocrystals (QDs...