Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research focused on Graphene and Graphene nanoribbons, with related work in Nanotechnology, Phosphor, Zigzag. Notable publications include 'Synthesis of structurally well-defined and liquid-phase-processable graphene nanoribbons', 'Bottom-Up Synthesis of Liquid-Phase-Processable Graphene Nanoribbons with Near-Infrared Absorption', and 'A detailed aging analysis of MPO4:X (M = Y3+, La3+, Lu3+; X = Bi3+, Pr3+, Gd3+) due to the Xe excimer discharge'.
Preferred Al Locations in the Framework Structure of the Zeolite SSZ-82
Sodium Metal Oxyhalides Na<i>M</i>OCl<sub>4</sub> (<i>M</i> = Nb, Ta) with High Ionic Conductivities
Bottom‐up Solution Synthesis of Graphene Nanoribbons with Precisely Engineered Nanopores
Cove-Edged Chiral Graphene Nanoribbons with Chirality-Dependent Bandgap and Carrier Mobility
Curved graphene nanoribbons derived from tetrahydropyrene-based polyphenylenes<i>via</i>one-pot K-region oxidation and Scholl cyclization
Pushing the Detection Limit of Static Wideline NMR Spectroscopy Using Ultrafast Frequency-Swept Pulses
Nasschemische Bottom‐up Synthese von Graphen‐Nanostreifen mit atompräzisen Nanoporen
Band structure modulation by methoxy-functionalization of graphene nanoribbons
Cove-Edged Graphene Nanoribbons with Incorporation of Periodic Zigzag-Edge Segments
Tunable Superstructures of Dendronized Graphene Nanoribbons in Liquid Phase
A detailed aging analysis of MPO4:X (M = Y3+, La3+, Lu3+; X = Bi3+, Pr3+, Gd3+) due to the Xe excimer discharge
Intrinsic Properties of Single Graphene Nanoribbons in Solution: Synthetic and Spectroscopic Studies
Poly(ethylene oxide) Functionalized Graphene Nanoribbons with Excellent Solution Processability
Bottom-Up Synthesis of Liquid-Phase-Processable Graphene Nanoribbons with Near-Infrared Absorption
Synthesis of structurally well-defined and liquid-phase-processable graphene nanoribbons