Hybrid systems composed of conjugated polymers and inorganic semiconductor nanocrystals such as quantum dots (QDs) and nanorods (QRs) represent highly desirable multifunctional materials for applications from energy harvesting to light emission and sensing. Herein, we describe energy transfer studies between low-dispersity segmented conjugated polymer micellar nanofibers integrated with quantum dots that are spatially confined to discrete regions in the hybrid assembly via noncovalent interactions. The nanofibers were prepared from diblock copolymers with a crystallizable poly(di-n-hexylfluorene) (PDHF) core-forming block and different corona-forming blocks using the seeded-growth "living" crystallization-driven self-assembly method. The hi...
Design of light harvesting systems using inorganic–organic hybrid nanostructures is an emerging fiel...
© 2021 Na WuColloidal semiconductor nanoparticles, which are commonly referred to as quantum dots (Q...
AbstractThe prospect of exploiting quantum dots (QDs) properties (tunable absorption spectrum, multi...
Nanostructuring organic polymers and organic/inorganic hybrid materials and controlling blend morpho...
Nanocomposites of colloidal quantum dots (QDs) integrated into conjugated polymers (CPs) are key to ...
Semiconductors nanocrystals (NCs), also called quantum dots (QDs), have attracted tremendous interes...
Temperature dependent exciton migration in the hybrid nanocomposites of conjugated polymers chemical...
Small, smaller, nano - it is a milestone in the development of new materials and technologies. Nanos...
Understanding how semiconductor quantum dots (QDs) engage in photoinduced energy transfer with carbo...
Seminconducting nanoparticles, also known as quantum dots or quantum rods depending on the shape, ha...
Energy transfer in a host-guest system consisting of a blue-emitting poly(2,7-spirofluorene) (PSF) d...
The development of hybrid materials based on a nanoscale combination of organic and inorganic semico...
The spatial control of the nano-emitters in novel light harvesting platforms offers great potential ...
Forster resonance energy transfer (FRET) phenomenon has great potential in several applications, who...
Quantum dot (QD) solids and arrays hold a great potential for novel applications which are aimed at ...
Design of light harvesting systems using inorganic–organic hybrid nanostructures is an emerging fiel...
© 2021 Na WuColloidal semiconductor nanoparticles, which are commonly referred to as quantum dots (Q...
AbstractThe prospect of exploiting quantum dots (QDs) properties (tunable absorption spectrum, multi...
Nanostructuring organic polymers and organic/inorganic hybrid materials and controlling blend morpho...
Nanocomposites of colloidal quantum dots (QDs) integrated into conjugated polymers (CPs) are key to ...
Semiconductors nanocrystals (NCs), also called quantum dots (QDs), have attracted tremendous interes...
Temperature dependent exciton migration in the hybrid nanocomposites of conjugated polymers chemical...
Small, smaller, nano - it is a milestone in the development of new materials and technologies. Nanos...
Understanding how semiconductor quantum dots (QDs) engage in photoinduced energy transfer with carbo...
Seminconducting nanoparticles, also known as quantum dots or quantum rods depending on the shape, ha...
Energy transfer in a host-guest system consisting of a blue-emitting poly(2,7-spirofluorene) (PSF) d...
The development of hybrid materials based on a nanoscale combination of organic and inorganic semico...
The spatial control of the nano-emitters in novel light harvesting platforms offers great potential ...
Forster resonance energy transfer (FRET) phenomenon has great potential in several applications, who...
Quantum dot (QD) solids and arrays hold a great potential for novel applications which are aimed at ...
Design of light harvesting systems using inorganic–organic hybrid nanostructures is an emerging fiel...
© 2021 Na WuColloidal semiconductor nanoparticles, which are commonly referred to as quantum dots (Q...
AbstractThe prospect of exploiting quantum dots (QDs) properties (tunable absorption spectrum, multi...