2D perovskite materials have recently reattracted intense research interest for applications in photovoltaics and optoelectronics. As a consequence of the dielectric and quantum confinement effect, they show strongly bound and stable excitons at room temperature. Here, the band-edge exciton fine structure and in particular its exciton and biexciton dynamics in high quality crystals of (PEA)2PbI4 are investigated. A comparison of bulk and surface exciton lifetimes yields a room temperature surface recombination velocity of 2 × 103 cm s−1 and an intrinsic lifetime of 185 ns. Biexciton emission is evidenced at room temperature, with a binding energy of ≈45 meV and a lifetime of 80 ps. At low temperature, exciton state splitting is observed, wh...
Two-dimensional (2D) organic-inorganic hybrid perovskites have attracted growing attention recently ...
International audienceOver the past few years, organic-inorganic halide 3D perovskites were found to...
2D perovskites offers a rich playing field to explore exciton physics and they possess a great poten...
2D perovskite materials have recently reattracted intense research interest for applications in phot...
International audience2D perovskite materials have recently reattracted intense research interest fo...
: Layered 2D perovskites are making inroads as materials for photovoltaics and light emitting diodes...
With strongly bound and stable excitons at room temperature, single-layer, two-dimensional organic-i...
Optically inactive dark exciton states play an important role in light emission processes in semicon...
Atomically thin layers of two-dimensional lead halide perovskite semiconductors exhibit prominent li...
Hybrid organometal halide perovskites have been demonstrated to have outstanding performance as semi...
Understanding exciton formation is of fundamental importance for emerging optoelectronic materials, ...
The unprecedented success of hybrid organic–inorganic lead halide perovskites in photovoltaics motiv...
International audienceRecently, Ruddlesden–Popper 2D perovskite (RPP) solar cells and light-emitting...
Two-dimensional (2D) organic-inorganic hybrid perovskites have attracted growing attention recently ...
International audienceOver the past few years, organic-inorganic halide 3D perovskites were found to...
2D perovskites offers a rich playing field to explore exciton physics and they possess a great poten...
2D perovskite materials have recently reattracted intense research interest for applications in phot...
International audience2D perovskite materials have recently reattracted intense research interest fo...
: Layered 2D perovskites are making inroads as materials for photovoltaics and light emitting diodes...
With strongly bound and stable excitons at room temperature, single-layer, two-dimensional organic-i...
Optically inactive dark exciton states play an important role in light emission processes in semicon...
Atomically thin layers of two-dimensional lead halide perovskite semiconductors exhibit prominent li...
Hybrid organometal halide perovskites have been demonstrated to have outstanding performance as semi...
Understanding exciton formation is of fundamental importance for emerging optoelectronic materials, ...
The unprecedented success of hybrid organic–inorganic lead halide perovskites in photovoltaics motiv...
International audienceRecently, Ruddlesden–Popper 2D perovskite (RPP) solar cells and light-emitting...
Two-dimensional (2D) organic-inorganic hybrid perovskites have attracted growing attention recently ...
International audienceOver the past few years, organic-inorganic halide 3D perovskites were found to...
2D perovskites offers a rich playing field to explore exciton physics and they possess a great poten...