Hybrid optoelectronic devices are attractive because they offer the promise of low-cost, roll-to-roll fabrication. Despite this, energy transfer between organic and inorganic interfaces is not well understood. Device engineering on this class of solution-processed materials generally focuses on replacing the long insulating ligands with short ones. Here, we show that energy and charge transfer between an inorganic nanocrystal (NC) donor and organic molecular acceptor is acutely sensitive to the chemical moiety linking the two species. Our results reveal that the CdS NCs have distinct binding sites for different chemical species because only resonance energy transfer (RET) is observed for the carboxylic-acid-functionalized ligand, while both...
Molecular control of energy transfer is an attractive proposition because it allows chemists to synt...
Here, the surface functionalization of CdSe and CdSe/CdS core/shell nanocrystals (NCs) with compact ...
The transfer of thermal energy from the ligand passivating layer to the inorganic core of colloidal ...
Colloidal semiconductor nanocrystals (NCs) are a novel set of materials with unique properties. Due ...
Nanoscale confinement extends the desirable properties of inorganic semiconductors for electronics a...
We study ligand exchange between the carboxylic acid group and 5.0 nm oleic-acid capped CdS nanocrys...
Nanocrystals as functional materials rely heavily on their ability to interface with their immediate...
We present a joint experimental and theoretical study of the early stage dynamics of photoexcited ch...
2015-07-09Understanding how nanocrystal surface chemistry influences the transport of photogenerated...
Ligands for nanocrystals (NCs) have been widely studied beyond its role as a capping agent to applic...
We show with the aid of first-principles electronic structure calculations that suitable choice of t...
Owing to the difficulty in comprehensively characterizing nanocrystal (NC) surfaces, clear guidance ...
CdSe nanocrystals were modified with small ligand molecules in order to render them compatible with...
We show with the aid of first-principles electronic structure calculations that suitable choice of t...
Abstract: Semiconductor nanocrystals have long been studied as alternatives to traditional bulk semi...
Molecular control of energy transfer is an attractive proposition because it allows chemists to synt...
Here, the surface functionalization of CdSe and CdSe/CdS core/shell nanocrystals (NCs) with compact ...
The transfer of thermal energy from the ligand passivating layer to the inorganic core of colloidal ...
Colloidal semiconductor nanocrystals (NCs) are a novel set of materials with unique properties. Due ...
Nanoscale confinement extends the desirable properties of inorganic semiconductors for electronics a...
We study ligand exchange between the carboxylic acid group and 5.0 nm oleic-acid capped CdS nanocrys...
Nanocrystals as functional materials rely heavily on their ability to interface with their immediate...
We present a joint experimental and theoretical study of the early stage dynamics of photoexcited ch...
2015-07-09Understanding how nanocrystal surface chemistry influences the transport of photogenerated...
Ligands for nanocrystals (NCs) have been widely studied beyond its role as a capping agent to applic...
We show with the aid of first-principles electronic structure calculations that suitable choice of t...
Owing to the difficulty in comprehensively characterizing nanocrystal (NC) surfaces, clear guidance ...
CdSe nanocrystals were modified with small ligand molecules in order to render them compatible with...
We show with the aid of first-principles electronic structure calculations that suitable choice of t...
Abstract: Semiconductor nanocrystals have long been studied as alternatives to traditional bulk semi...
Molecular control of energy transfer is an attractive proposition because it allows chemists to synt...
Here, the surface functionalization of CdSe and CdSe/CdS core/shell nanocrystals (NCs) with compact ...
The transfer of thermal energy from the ligand passivating layer to the inorganic core of colloidal ...