Area of research
Electrical and Electronic Engineering · Electrochemistry
Research interest
Research interests include Organic Electronics and Photovoltaics, Electrochemical Analysis and Applications, Electrocatalysts for Energy Conversion, and Organic Light-Emitting Diodes Research.
Thin films of electron donor–acceptor complexes: characterisation of mixed-crystalline phases and implications for electrical doping
Ordered Donor–Acceptor Complex Formation and Electron Transfer in Co-deposited Films of Structurally Dissimilar Molecules
State-of-Matter-Dependent Charge-Transfer Interactions between Planar Molecules for Doping Applications
Electronic band dispersion determination in azimuthally disordered transition-metal dichalcogenide monolayers
Ground-state charge-transfer interactions in donor:acceptor pairs of organic semiconductors – a spectroscopic study of two representative systems
Molecular structure of the substrate-induced thin-film phase of tetracene
Thin-Film Texture and Optical Properties of Donor/Acceptor Complexes. Diindenoperylene/F6TCNNQ vs Alpha-Sexithiophene/F6TCNNQ
Evidence for Anisotropic Electronic Coupling of Charge Transfer States in Weakly Interacting Organic Semiconductor Mixtures
Low temperature processed NiOx hole transport layers for efficient polymer solar cells
Effective Work Function Reduction of Practical Electrodes Using an Organometallic Dimer
Diffusion and nucleation in multilayer growth of PTCDI-C8 studied with <i>in situ</i> X-ray growth oscillations and real-time small angle X-ray scattering
Controlling the growth mode of <i>para</i>-sexiphenyl (6P) on ZnO by partial fluorination
Lattice Matching as the Determining Factor for Molecular Tilt and Multilayer Growth Mode of the Nanographene Hexa-<i>peri</i>-hexabenzocoronene