top of page
materials 2.jpg

Materials development

synthesis.png

Nanocrystal synthesis

Nanocrystals allow to enhance the optoelectronic properties of bulk organic, inorganic, hybrid perovskite materials.

nanocrystal modification.png

Nanocrystal modification

Ligand engineering and core crystal engineering enable defect passivation and high photoluminescence/light-harvesting efficiency 

perovskite.jpg

Materials design

Design of high performance single-/poly-/nano crystals

chiral materials.png

Chiral materials

Chiral organic/inorganic hybrid materials enable to control spin-direction of charge carriers and lights without external magnet, allowing for the demonstration of spin-optoelectronics.

device.png

Device integration

device _ LEds.png

Light-emitting diodes

Efficient light-emitting diodes based on organics, inorganics, perovskites, hybrid materials save the energy in future displays and solid-state lighting.

solar cells.png

Solar cells

Efficient perovskite solar cells convert the light into energy.

photodetector.png

Photodetectors

Photodetectors distinguish the directions of circularly polarized light.

bottom of page