Two-dimensional (2D) excitons arise from electron-hole confinement along one spatial dimension. Such excitations are often described in terms of Frenkel or Wannier limits according to the degree of exciton spatial localization and the surrounding dielectric environment. In hybrid material systems, such as the 2D perovskites, the complex underlying interactions lead to excitons of an intermediate nature, whose description lies somewhere between the two limits, and a better physical description is needed. Here, we explore the photophysics of a tuneable materials platform where covalently bonded metal-chalcogenide layers are spaced by organic ligands that provide confinement barriers for charge carriers in the inorganic layer. We consider self...
Atomically thin transition metal dichalcogenides (TMDs) are a new family of semiconductors with exci...
We study the properties of excitons in 2D semiconductors (2DSC) by numerically solving the Schr\ {o}...
Hybrid organic-inorganic perovskites have emerged as very promising materials for photonic applicati...
Two-dimensional (2D) excitons arise from electron-hole confinement along one spatial dimension. Such...
Two-dimensional (2D) excitons arise from electron-hole confinement along one spatial dimension. Such...
Metal-organic species can be designed to self-assemble in large-scale, atomically defined, supramole...
Metal-organic species can be designed to self-assemble in large-scale, atomically defined, supramole...
Metal-organic species can be designed to self-assemble in large-scale, atomically defined, supramole...
Layered perovskites are hybrid 2D materials, formed through the self-assembly of inorganic lead hali...
Silver phenylselenolate (AgSePh, also known as “mithrene”) and silver phenyltellurolate (AgTePh, als...
Semiconducting transition metal dichalcogenides (TMDs) are 2D sheet-like materials with atomic scale...
Hybrid quantum wells are electronic structures where charge carriers are confined along stacked inor...
Two-dimensional materials are currently in the spotlight of nanotechnology research due to their int...
This thesis focuses on the studies of two families of two-dimensional (2D) hybrid organic-inorganic ...
In contrast to inorganic quantum wells, hybrid quantum wells (HQWs) based on metal-organic semicondu...
Atomically thin transition metal dichalcogenides (TMDs) are a new family of semiconductors with exci...
We study the properties of excitons in 2D semiconductors (2DSC) by numerically solving the Schr\ {o}...
Hybrid organic-inorganic perovskites have emerged as very promising materials for photonic applicati...
Two-dimensional (2D) excitons arise from electron-hole confinement along one spatial dimension. Such...
Two-dimensional (2D) excitons arise from electron-hole confinement along one spatial dimension. Such...
Metal-organic species can be designed to self-assemble in large-scale, atomically defined, supramole...
Metal-organic species can be designed to self-assemble in large-scale, atomically defined, supramole...
Metal-organic species can be designed to self-assemble in large-scale, atomically defined, supramole...
Layered perovskites are hybrid 2D materials, formed through the self-assembly of inorganic lead hali...
Silver phenylselenolate (AgSePh, also known as “mithrene”) and silver phenyltellurolate (AgTePh, als...
Semiconducting transition metal dichalcogenides (TMDs) are 2D sheet-like materials with atomic scale...
Hybrid quantum wells are electronic structures where charge carriers are confined along stacked inor...
Two-dimensional materials are currently in the spotlight of nanotechnology research due to their int...
This thesis focuses on the studies of two families of two-dimensional (2D) hybrid organic-inorganic ...
In contrast to inorganic quantum wells, hybrid quantum wells (HQWs) based on metal-organic semicondu...
Atomically thin transition metal dichalcogenides (TMDs) are a new family of semiconductors with exci...
We study the properties of excitons in 2D semiconductors (2DSC) by numerically solving the Schr\ {o}...
Hybrid organic-inorganic perovskites have emerged as very promising materials for photonic applicati...