Quantum dot-organic semiconductor hybrid materials are gaining increasing attention as spin mixers for applications ranging from solar harvesting to spin memories. Triplet energy transfer between the inorganic quantum dot (QD) and organic semiconductor is a key step to understand in order to develop these applications. Here we report on the triplet energy transfer from PbS QDs to four energetically and structurally similar tetracene ligands. Even with similar ligands we find that the triplet energy transfer dynamics can vary significantly. For TIPS-tetracene derivatives with carboxylic acid, acetic acid and methanethiol anchoring groups on the short pro-cata side we find that triplet transfer occurs through a stepwise process, mediated via ...
Hybrid materials comprised of inorganic quantum dots functionalized with small-molecule organic chro...
Owing to the difficulty in comprehensively characterizing nanocrystal (NC) surfaces, clear guidance ...
We studied the dynamics of transfer of photoexcited electronic states in a bilayer of the two-dimens...
Triplet energy transfer between inorganic quantum dots (QDs) and organic materials plays a fundament...
Hybrid inorganic-organic materials such as quantum dots (QDs) coupled with organic semiconductors ha...
Hybrid inorganic-organic materials such as quantum dots (QDs) coupled with organic semiconductors ha...
Hybrid inorganic-organic materials such as quantum dots (QDs) coupled with organic semiconductors ha...
The effect of isomeric substitutions on the transmitter for triplet energy transfer (TET) between na...
The effect of isomeric substitutions on the transmitter for triplet energy transfer (TET) between na...
The generation and transfer of triplet excitons across the molecular–semiconductor interface represe...
Molecular control of energy transfer is an attractive proposition because it allows chemists to synt...
Molecular control of energy transfer is an attractive proposition because it allows chemists to synt...
Hybrid organic:inorganic materials composed of semiconductor nanocrystals functionalized with acene ...
Molecular control of energy transfer is an attractive proposition because it allows chemists to synt...
Owing to the difficulty in comprehensively characterizing nanocrystal (NC) surfaces, clear guidance ...
Hybrid materials comprised of inorganic quantum dots functionalized with small-molecule organic chro...
Owing to the difficulty in comprehensively characterizing nanocrystal (NC) surfaces, clear guidance ...
We studied the dynamics of transfer of photoexcited electronic states in a bilayer of the two-dimens...
Triplet energy transfer between inorganic quantum dots (QDs) and organic materials plays a fundament...
Hybrid inorganic-organic materials such as quantum dots (QDs) coupled with organic semiconductors ha...
Hybrid inorganic-organic materials such as quantum dots (QDs) coupled with organic semiconductors ha...
Hybrid inorganic-organic materials such as quantum dots (QDs) coupled with organic semiconductors ha...
The effect of isomeric substitutions on the transmitter for triplet energy transfer (TET) between na...
The effect of isomeric substitutions on the transmitter for triplet energy transfer (TET) between na...
The generation and transfer of triplet excitons across the molecular–semiconductor interface represe...
Molecular control of energy transfer is an attractive proposition because it allows chemists to synt...
Molecular control of energy transfer is an attractive proposition because it allows chemists to synt...
Hybrid organic:inorganic materials composed of semiconductor nanocrystals functionalized with acene ...
Molecular control of energy transfer is an attractive proposition because it allows chemists to synt...
Owing to the difficulty in comprehensively characterizing nanocrystal (NC) surfaces, clear guidance ...
Hybrid materials comprised of inorganic quantum dots functionalized with small-molecule organic chro...
Owing to the difficulty in comprehensively characterizing nanocrystal (NC) surfaces, clear guidance ...
We studied the dynamics of transfer of photoexcited electronic states in a bilayer of the two-dimens...