Layer-by-layer assembly of CsPbX3 nanocrystals into large-scale homostructures
Creators
- 1. Photonic Nanomaterials, Istituto Italiano di Tecnologia
- 2. Clean Room Facility, Istituto Italiano di Tecnologia
Description
Advances in surface chemistry of CsPbX3 (where X = Cl, Br or I) nanocrystals (NCs) enabled the replacement of native chain ligands in solution. However, there are few reports on ligand exchange carried out on CsPbX3 NC thin films. Solid-state ligand exchange can improve the photoluminescence quantum yield (PLQY) of the film and promote a change in solubility of the solid surface, thus enabling multiple depositions of subsequent nanocrystal layers. Fine control of nanocrystal film thickness is of importance for light-emitting diodes (LEDs), solar cells and lasers alike. The thickness of the emissive material film is crucial to assure the copious recombination of charges injected into a LED, resulting in bright electroluminescence. Similarly, solar cell performance is determined by the amount of absorbed light, and hence the light absorber content in the device. In this study, we demonstrate a layer-by-layer (LbL) assembly method that results in high quality films, whose thicknesses can be finely controlled. In the solid state, we replaced oleic acid and oleylamine ligands with didodecyldimethylammonium bromide or ammonium thiocyanate that enhance the PLQY of the film. The exchange is carried out through a spin-coating technique, using solvents with strategic polarity to avoid NC dissolution or damage. Exploiting this technique, the deposition of various layers results in considerable thickening of films as proven by atomic force microscope measurements. The ease of handling of our combined process (i.e. ligand exchange and layer-by-layer deposition) enables thickness control over CsPbX3 NC films with applicability to other perovskite nanomaterials paving the way for a large variety of layer permutations.
Files
d2nr04169c.pdf
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Additional details
Funding
- European Commission
- INFLED – Fully RoHS Compliant Infrared Light Emitting Diodes Based on Novel Lead-free Quantum Dots 101024823
- European Commission
- REPLY – REshaping Photocatalysis via Light-Matter hYbridization in Plasmonic Nanocavities 101002422
- European Commission
- NANOLED – Toward single colloidal nanocrystal light-emitting diodes 851794