Controlling the dispersibility of nanocrystalline inorganic quantum dots (QDs) within organic semiconductor (OSC):QD nanocomposite films is critical for a wide range of optoelectronic devices. This work demonstrates how small changes to the OSC host molecule can have a dramatic detrimental effect on QD dispersibility within the host organic semiconductor matrix as quantified by grazing incidence X-ray scattering. It is commonplace to modify QD surface chemistry to enhance QD dispersibility within an OSC host. Here, an alternative route toward optimizing QD dispersibilities is demonstrated, which dramatically improves QD dispersibilities through blending two different OSCs to form a fully mixed OSC matrix phase
Nanocrystal quantum dots (QD) functionalised with active organic ligands hold significant promise as...
Colloidal quantum dots (QDs) stand among the most attractive light-harvesting materials to be exploi...
Organic–inorganic nanocomposite films formed from blends of small-molecule organic semiconductors an...
Controlling the dispersibility of nanocrystalline inorganic quantum dots (QDs) within organic semico...
Funder: Cambridge Commonwealth European and International TrustAbstract: Controlling the dispersibil...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
Hybrid small-molecule/quantum dot films have the potential to reduce thermalization losses in single...
© 2021 Na WuColloidal semiconductor nanoparticles, which are commonly referred to as quantum dots (Q...
Semiconductor quantum dots (QDs) are interesting materials that, after less than 40 years of researc...
PTCD/NAN-OPT/28837/2017Insightful knowledge on quantum nanostructured materials is paramount to engi...
Luminescent quantum dots (QDs) are colloidal semiconductor nanocrystals consisting of an inorganic c...
Blends comprising organic semiconductors and inorganic quantum-dots (QDs) are relevant for many opto...
Unrelenting advances in the field of nanoscience are fostering the progress in diverse research fiel...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...
Nanocrystal quantum dots (QD) functionalised with active organic ligands hold significant promise as...
Colloidal quantum dots (QDs) stand among the most attractive light-harvesting materials to be exploi...
Organic–inorganic nanocomposite films formed from blends of small-molecule organic semiconductors an...
Controlling the dispersibility of nanocrystalline inorganic quantum dots (QDs) within organic semico...
Funder: Cambridge Commonwealth European and International TrustAbstract: Controlling the dispersibil...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
Controlling the dispersibility of crystalline inorganic quantum dots (QD) within organic-QD nanocomp...
Hybrid small-molecule/quantum dot films have the potential to reduce thermalization losses in single...
© 2021 Na WuColloidal semiconductor nanoparticles, which are commonly referred to as quantum dots (Q...
Semiconductor quantum dots (QDs) are interesting materials that, after less than 40 years of researc...
PTCD/NAN-OPT/28837/2017Insightful knowledge on quantum nanostructured materials is paramount to engi...
Luminescent quantum dots (QDs) are colloidal semiconductor nanocrystals consisting of an inorganic c...
Blends comprising organic semiconductors and inorganic quantum-dots (QDs) are relevant for many opto...
Unrelenting advances in the field of nanoscience are fostering the progress in diverse research fiel...
Colloidal quantum dot (CQD) photovoltaic devices have improved rapidly over the past decade of resea...
Nanocrystal quantum dots (QD) functionalised with active organic ligands hold significant promise as...
Colloidal quantum dots (QDs) stand among the most attractive light-harvesting materials to be exploi...
Organic–inorganic nanocomposite films formed from blends of small-molecule organic semiconductors an...