The efficiency of nanocrystal (NC)-based devices is often limited by the presence of surface states that lead to localized energy levels in the bandgap. Yet, a complete understanding of the nature of these traps remains challenging. Although theoretical modeling has greatly improved our comprehension of the NC surface, several experimental studies suggest the existence of metal-based traps that have not yet been found with theoretical methods. Since there are indications that these metal-based traps form in the presence of excess electrons, the present work uses density functional theory (DFT) calculations to study the effects of charging II-VI semiconductor NCs with either full or imperfect surface passivation. It is found that charge inje...
In large molecular systems such as DNA, supramolecular complexes and dendrimers, functional groups l...
Electronic traps at the inorganic–organic interface of colloidal quantum dots (QDs) are detrimental ...
Energy levels in the band gap arising from surface states can dominate the optical and electronic pr...
The efficiency of nanocrystal (NC)-based devices is often limited by the presence of surface states ...
One of the greatest challenges in the field of semiconductor nanomaterials is to make trap-free nano...
The photoluminescence (PL) quantum yield of semiconductor nanocrystals (NCs) is hampered by in-gap t...
The photoluminescence (PL) quantum yield of semiconductor nanocrystals (NCs) is hampered by in-gap t...
Energy levels in the band gap arising from surface states can dominate the optical and electronic pr...
The intricate chemistry of the surface of semiconductor nanocrystals is crucial to tailoring their o...
Trap states play a crucial role in the design of colloidal quantum dot (QD)-based technologies. The ...
Size tunability of the optical properties and inexpensive synthesis make semiconductor nanocrystals ...
The current model for understanding trapping of charge carriers to the surface of semiconductor nano...
In the charging model the fluorescence intermittency observed in semiconductor nanocrystals is expla...
Using first-principles simulations on PbS and CdSe colloidal quantum dots, we find that surface defe...
We have performed ab initio calculations of electronic properties of the realistic Cd-rich CdSe nano...
In large molecular systems such as DNA, supramolecular complexes and dendrimers, functional groups l...
Electronic traps at the inorganic–organic interface of colloidal quantum dots (QDs) are detrimental ...
Energy levels in the band gap arising from surface states can dominate the optical and electronic pr...
The efficiency of nanocrystal (NC)-based devices is often limited by the presence of surface states ...
One of the greatest challenges in the field of semiconductor nanomaterials is to make trap-free nano...
The photoluminescence (PL) quantum yield of semiconductor nanocrystals (NCs) is hampered by in-gap t...
The photoluminescence (PL) quantum yield of semiconductor nanocrystals (NCs) is hampered by in-gap t...
Energy levels in the band gap arising from surface states can dominate the optical and electronic pr...
The intricate chemistry of the surface of semiconductor nanocrystals is crucial to tailoring their o...
Trap states play a crucial role in the design of colloidal quantum dot (QD)-based technologies. The ...
Size tunability of the optical properties and inexpensive synthesis make semiconductor nanocrystals ...
The current model for understanding trapping of charge carriers to the surface of semiconductor nano...
In the charging model the fluorescence intermittency observed in semiconductor nanocrystals is expla...
Using first-principles simulations on PbS and CdSe colloidal quantum dots, we find that surface defe...
We have performed ab initio calculations of electronic properties of the realistic Cd-rich CdSe nano...
In large molecular systems such as DNA, supramolecular complexes and dendrimers, functional groups l...
Electronic traps at the inorganic–organic interface of colloidal quantum dots (QDs) are detrimental ...
Energy levels in the band gap arising from surface states can dominate the optical and electronic pr...