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Synergy of 3D and 2D perovskites for durable, efficient solar cells and beyond
Three-dimensional (3D) organic–inorganic lead halide perovskites have emerged in the
past few years as a promising material for low-cost, high-efficiency optoelectronic devices …
past few years as a promising material for low-cost, high-efficiency optoelectronic devices …
Carriers, quasi-particles, and collective excitations in halide perovskites
Halide perovskites (HPs) are potential game-changing materials for a broad spectrum of
optoelectronic applications ranging from photovoltaics, light-emitting devices, lasers to …
optoelectronic applications ranging from photovoltaics, light-emitting devices, lasers to …
Boosting exciton mobility approaching Mott-Ioffe-Regel limit in Ruddlesden− Popper perovskites by anchoring the organic cation
Exciton transport in two-dimensional Ruddlesden− Popper perovskite plays a pivotal role for
their optoelectronic performance. However, a clear photophysical picture of exciton transport …
their optoelectronic performance. However, a clear photophysical picture of exciton transport …
Semiconductor physics of organic–inorganic 2D halide perovskites
JC Blancon, J Even, CC Stoumpos… - Nature …, 2020 - nature.com
Achieving technologically relevant performance and stability for optoelectronics, energy
conversion, photonics, spintronics and quantum devices requires creating atomically precise …
conversion, photonics, spintronics and quantum devices requires creating atomically precise …
Exciton-coupled coherent magnons in a 2D semiconductor
The recent discoveries of two-dimensional (2D) magnets,,,,–and their stacking into van der
Waals structures,,,–have expanded the horizon of 2D phenomena. One exciting application …
Waals structures,,,–have expanded the horizon of 2D phenomena. One exciting application …
Coherent phenomena and dynamics of lead halide perovskite nanocrystals for quantum information technologies
Solution-processed colloidal nanocrystals of lead halide perovskites have been intensively
investigated in recent years in the context of optoelectronic devices, during which time their …
investigated in recent years in the context of optoelectronic devices, during which time their …
Exciton polaron formation and hot-carrier relaxation in rigid Dion–Jacobson-type two-dimensional perovskites
S Biswas, R Zhao, F Alowa, M Zacharias… - Nature Materials, 2024 - nature.com
The efficiency of two-dimensional Dion–Jacobson-type materials relies on the complex
interplay between electronic and lattice dynamics; however, questions remain about the …
interplay between electronic and lattice dynamics; however, questions remain about the …
Non-adiabatic excited-state molecular dynamics: Theory and applications for modeling photophysics in extended molecular materials
Optically active molecular materials, such as organic conjugated polymers and biological
systems, are characterized by strong coupling between electronic and vibrational degrees of …
systems, are characterized by strong coupling between electronic and vibrational degrees of …
2D hybrid perovskites: from static and dynamic structures to potential applications
Abstract 2D perovskites have received great attention recently due to their structural
tunability and environmental stability, making them highly promising candidates for various …
tunability and environmental stability, making them highly promising candidates for various …
Structural descriptor for enhanced spin-splitting in 2D hybrid perovskites
Abstract Two-dimensional (2D) hybrid metal halide perovskites have emerged as
outstanding optoelectronic materials and are potential hosts of Rashba/Dresselhaus spin …
outstanding optoelectronic materials and are potential hosts of Rashba/Dresselhaus spin …