Metal-organic species can be designed to self-assemble in large-scale, atomically defined, supramolecular architectures. A particular example is hybrid quantum wells, where inorganic two-dimensional (2D) planes are separated by organic ligands. The ligands effectively form an intralayer confinement for charge carriers resulting in a 2D electronic structure, even in multilayered assemblies. Air-stable layered transition metal organic chalcogenides have recently been found to host tightly bound 2D excitons with strong optical anisotropy in a bulk matrix. Here, we investigate the excited carrier dynamics in the prototypical metal-organic chalcogenide [AgSePh]∞, disentangling three excitonic resonances by low temperature transient absorption sp...
Solution-processed semiconducting transition metal dichalcogenides are emerging as promising two-di...
We report charged exciton (trion) formation dynamics in doped monolayer transition metal dichalcogen...
Monolayer transition metal dichalcogenides (TMDs) such as MoS2 feature strong light absorption, pron...
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...
In contrast to inorganic quantum wells, hybrid quantum wells (HQWs) based on metal-organic semicondu...
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...
Hybrid quantum wells are electronic structures where charge carriers are confined along stacked inor...
The emergence of two-dimensional (2D) layered materials provides unprecedented opportunities for stu...
Many of the fundamental optical and electronic properties of atomically thin transition metal dichal...
Monolayers of transition metal dichalcogenides (TMDs) are characterized by an extraordinarily strong...
: The coupling of the electron system to lattice vibrations and their time-dependent control and det...
This thesis focuses on the studies of two families of two-dimensional (2D) hybrid organic-inorganic ...
Solution-processed semiconducting transition metal dichalcogenides are emerging as promising two-di...
We report charged exciton (trion) formation dynamics in doped monolayer transition metal dichalcogen...
Monolayer transition metal dichalcogenides (TMDs) such as MoS2 feature strong light absorption, pron...
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...
In contrast to inorganic quantum wells, hybrid quantum wells (HQWs) based on metal-organic semicondu...
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...
Hybrid quantum wells are electronic structures where charge carriers are confined along stacked inor...
The emergence of two-dimensional (2D) layered materials provides unprecedented opportunities for stu...
Many of the fundamental optical and electronic properties of atomically thin transition metal dichal...
Monolayers of transition metal dichalcogenides (TMDs) are characterized by an extraordinarily strong...
: The coupling of the electron system to lattice vibrations and their time-dependent control and det...
This thesis focuses on the studies of two families of two-dimensional (2D) hybrid organic-inorganic ...
Solution-processed semiconducting transition metal dichalcogenides are emerging as promising two-di...
We report charged exciton (trion) formation dynamics in doped monolayer transition metal dichalcogen...
Monolayer transition metal dichalcogenides (TMDs) such as MoS2 feature strong light absorption, pron...