With strongly bound and stable excitons at room temperature, single-layer, two-dimensional organic-inorganic hybrid perovskites are viable semiconductors for light-emitting quantum optoelectronics applications. In such a technological context, it is imperative to comprehensively explore all the factors—chemical, electronic, and structural—that govern strong multiexciton correlations. Here, by means of two-dimensional coherent spectroscopy, we examine excitonic many-body effects in pure, single-layer (PEA)2PbI4 (PEA = phenylethylammonium). We determine the binding energy of biexcitons—correlated two-electron, two-hole quasiparticles—to be 44 ± 5 meV at room temperature. The extraordinarily high values are similar to those reported in other s...
International audienceDue to their high potentiality for photovoltaic applications or coherent light...
Abstract: 2D perovskites offers a rich playing field to explore exciton physics and they possess a g...
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...
Two-dimensional (2D) organic-inorganic hybrid perovskites have attracted growing attention recently ...
Atomically thin layers of two-dimensional lead halide perovskite semiconductors exhibit prominent li...
Layered 2D halide perovskites with their alternating organic and inorganic atomic layers that form a...
International audienceDue to their high potentiality for photovoltaic applications or coherent light...
An outstanding potentiality of layered two-dimensional (2D) organic–inorganic hybrid perovskites (2D...
© 2021 American Chemical Society. In atomically thin two-dimensional (2D) crystals, the excitonic pr...
The knowledge of the exact nature of the electronic and optical excitations of Ruddlesden-Popper org...
Semiconductors are ubiquitous gain media for coherent light sources. Solution-processed three-dimens...
International audienceDue to their high potentiality for photovoltaic applications or coherent light...
Abstract: 2D perovskites offers a rich playing field to explore exciton physics and they possess a g...
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...
Two-dimensional (2D) organic-inorganic hybrid perovskites have attracted growing attention recently ...
Atomically thin layers of two-dimensional lead halide perovskite semiconductors exhibit prominent li...
Layered 2D halide perovskites with their alternating organic and inorganic atomic layers that form a...
International audienceDue to their high potentiality for photovoltaic applications or coherent light...
An outstanding potentiality of layered two-dimensional (2D) organic–inorganic hybrid perovskites (2D...
© 2021 American Chemical Society. In atomically thin two-dimensional (2D) crystals, the excitonic pr...
The knowledge of the exact nature of the electronic and optical excitations of Ruddlesden-Popper org...
Semiconductors are ubiquitous gain media for coherent light sources. Solution-processed three-dimens...
International audienceDue to their high potentiality for photovoltaic applications or coherent light...
Abstract: 2D perovskites offers a rich playing field to explore exciton physics and they possess a g...
2D perovskites offers a rich playing field to explore exciton physics and they possess a great poten...