Area of research
Materials Chemistry · Biomedical Engineering
Research interest
Research focused on Graphene nanoribbons and Graphene, with related work in Zigzag, Nanotechnology, Topology (electrical circuits). Notable publications include 'On-surface synthesis of graphene nanoribbons with zigzag edge topology', 'Graphene nanoribbon heterojunctions', and 'Engineering of robust topological quantum phases in graphene nanoribbons'.
Proximity-Driven Magnetic Coupling between an Open-Shell Nanographene and a Rare-Earth Surface Alloy
On-Surface Synthesis of Anthracene-Fused Zigzag Graphene Nanoribbons from 2,7-Dibromo-9,9′-bianthryl Reveals Unexpected Ring Rearrangements
On‐Surface Synthesis of Edge‐Extended Zigzag Graphene Nanoribbons
Sterically Selective [3 + 3] Cycloaromatization in the On-Surface Synthesis of Nanographenes
On‐Surface Interchain Coupling and Skeletal Rearrangement of Indenofluorene Polymers
Growth Optimization and Device Integration of Narrow‐Bandgap Graphene Nanoribbons
Growth Optimization and Device Integration of Narrow‐Bandgap Graphene Nanoribbons (Small 31/2022)
On-surface activation of benzylic C-H bonds for the synthesis of pentagon-fused graphene nanoribbons
Metallic carbon nanotube quantum dots with broken symmetries as a platform for tunable terahertz detection
Large-Cavity Coronoids with Different Inner and Outer Edge Structures
On-Surface Synthesis of Oligo(indenoindene)
Topological frustration induces unconventional magnetism in a nanographene
Overcoming Steric Hindrance in Aryl‐Aryl Homocoupling via On‐Surface Copolymerization
Engineering of robust topological quantum phases in graphene nanoribbons
On-Surface Synthesis and Characterization of 9-Atom Wide Armchair Graphene Nanoribbons
On-surface synthesis of graphene nanoribbons with zigzag edge topology
Superlubricity of graphene nanoribbons on gold surfaces
Giant edge state splitting at atomically precise graphene zigzag edges
Tunable Band Alignment with Unperturbed Carrier Mobility of On-Surface Synthesized Organic Semiconducting Wires
Molecules–Oligomers–Nanowires–Graphene Nanoribbons: A Bottom-Up Stepwise On-Surface Covalent Synthesis Preserving Long-Range Order
Graphene nanoribbon heterojunctions