Area of research
Atomic and Molecular Physics, and Optics · Electrical and Electronic Engineering
Research interest
Research interests include Semiconductor Quantum Structures and Devices, Quantum Dots Synthesis And Properties, Quantum and electron transport phenomena, and Semiconductor Lasers and Optical Devices.
Tuning the work function of GaN with organic molecular acceptors
Efficient light emission from inorganic and organic semiconductor hybrid structures by energy-level tuning
Ultrafast Nonlinear Response of Bulk Plasmons in Highly Doped ZnO Layers
Calculating Optical Absorption Spectra of Thin Polycrystalline Organic Films: Structural Disorder and Site-Dependent van der Waals Interaction
Nanoscale transport of surface excitons at the interface between ZnO and a molecular monolayer
Hybrid polaritons in a resonant inorganic/organic semiconductor microcavity
ZnO as a Tunable Metal: New Types of Surface Plasmon Polaritons
Morphology-, synthesis- and doping-independent tuning of ZnO work function using phenylphosphonates
Controlling the growth mode of <i>para</i>-sexiphenyl (6P) on ZnO by partial fluorination
Green Emission in Ladder‐Type Quarterphenyl: Beyond the Fluorenone‐Defect
Cascade energy transfer versus charge separation in ladder-type oligo(<i>p</i>-phenylene)/ZnO hybrid structures for light-emitting applications
A random laser as a dynamical network
Free‐electron concentration and polarity inversion domains in plasmonic (Zn,Ga)O
Controlling the work function of ZnO and the energy-level alignment at the interface to organic semiconductors with a molecular electron acceptor
Space-Charge Transfer in Hybrid Inorganic-Organic Systems
Molecular beam epitaxy of n-Zn(Mg)O as a low-damping plasmonic material at telecommunication wavelengths
Surface excitons on a ZnO (000-1) thin film
Cross-sectional TEM preparation of hybrid inorganic/organic materials systems by ultramicrotomy
Vacuum-processable ladder-type oligophenylenes for organic–inorganic hybrid structures: synthesis, optical and electrochemical properties upon increasing planarization as well as thin film growth
Trions in ZnO quantum wells and verification of the valence band ordering