Thanks to their broadband emission and solution processability, 2D hybrid perovskite materials are promising for the realization of large area and flexible lighting devices. The deposition of 2D perovskites, however, requires wide range solvents that are incompatible with commodity polymers used for structural support and light management. Here we demonstrate coupling of broad-emitting 2,2-(ethylenedioxy)bis(ethylammonium)PbCl4 perovskite with solution processed polymer distributed Bragg reflectors on both rigid fused silica and flexible polymer substrates. The optical functions of the chemically engineered perovskite were determined by ellipsometric measurements and used to design dielectric multilayer structures with photonic bandgap tuna...
As global power consumption continues to rapidly increase the need for efficient, economically feasi...
The demand for programmable, low-cost, compact and multifunctional lighting sources is critical for ...
Funder: Engineering and Physical Sciences Research Council; Id: http://dx.doi.org/10.13039/501100000...
Thanks to their broadband emission and solution processability, 2D hybrid perovskite materials are p...
Thanks to solution processability and broad emission in the visible spectral range, 2D hybrid perovs...
Thanks to versatile optoelectronic properties solution processable perovskites have attracted increa...
Thanks to solution processability and broad emission in the visible spectral range, 2D hybrid perovs...
Two-dimensional (2D) hybrid perovskites exhibiting broadband light emission are attractive as down-c...
Metal halide perovskites are rapidly emerging for their light emitting properties, making perovskite...
International audienceTwo-dimensional (2D) hybrid halide perovskites come as a family (B)(A)PbX (B a...
International audienceThe excellent optical and electronic properties of hybrid organic-inorganic pe...
Halide perovskite materials offer an ideal playground for easily tuning their color and, accordingly...
We show that luminescence spectra of solution-processable metal-halide perovskite films can be contr...
Metal halide perovskites (simplified as perovskites as below), particularly those in nanocrystal for...
A new strategy for structuring organic?inorganic perovskite materials for optoelectronic application...
As global power consumption continues to rapidly increase the need for efficient, economically feasi...
The demand for programmable, low-cost, compact and multifunctional lighting sources is critical for ...
Funder: Engineering and Physical Sciences Research Council; Id: http://dx.doi.org/10.13039/501100000...
Thanks to their broadband emission and solution processability, 2D hybrid perovskite materials are p...
Thanks to solution processability and broad emission in the visible spectral range, 2D hybrid perovs...
Thanks to versatile optoelectronic properties solution processable perovskites have attracted increa...
Thanks to solution processability and broad emission in the visible spectral range, 2D hybrid perovs...
Two-dimensional (2D) hybrid perovskites exhibiting broadband light emission are attractive as down-c...
Metal halide perovskites are rapidly emerging for their light emitting properties, making perovskite...
International audienceTwo-dimensional (2D) hybrid halide perovskites come as a family (B)(A)PbX (B a...
International audienceThe excellent optical and electronic properties of hybrid organic-inorganic pe...
Halide perovskite materials offer an ideal playground for easily tuning their color and, accordingly...
We show that luminescence spectra of solution-processable metal-halide perovskite films can be contr...
Metal halide perovskites (simplified as perovskites as below), particularly those in nanocrystal for...
A new strategy for structuring organic?inorganic perovskite materials for optoelectronic application...
As global power consumption continues to rapidly increase the need for efficient, economically feasi...
The demand for programmable, low-cost, compact and multifunctional lighting sources is critical for ...
Funder: Engineering and Physical Sciences Research Council; Id: http://dx.doi.org/10.13039/501100000...