Area of research
Materials Chemistry · Organic Chemistry
Research interest
Research focused on Copolymer and Polymer chemistry, with related work in Micelle, Polymerization, Artificial photosynthesis. Notable publications include 'Tailored hierarchical micelle architectures using living crystallization-driven self-assembly in two dimensions', 'Artificial spherical chromatophore nanomicelles for selective CO2 reduction in water', and 'Dimensional Control of Block Copolymer Nanofibers with a π‐Conjugated Core: Crystallization‐Driven Solution Self‐Assembly of Amphiphilic Poly(3‐hexylthiophene)‐ b...'.
Artificial spherical chromatophore nanomicelles for selective CO2 reduction in water
High-resolution cryo-electron microscopy structure of block copolymer nanofibres with a crystalline core
Titanium‐Catalyzed Polymerization of a Lewis Base‐Stabilized Phosphinoborane
Understanding the Dissolution and Regrowth of Core-Crystalline Block Copolymer Micelles: A Scaling Approach
Explosive dissolution and trapping of block copolymer seed crystallites
A Convenient Route to Monoalkyl‐Substituted Phosphanylboranes (HRP–BH2–NMe3): Prospective Precursors to Poly[(alkylphosphino)boranes]
Metal‐Free Addition/Head‐to‐Tail Polymerization of Transient Phosphinoboranes, RPH‐BH<sub>2</sub>: A Route to Poly(alkylphosphinoboranes)
Metallfreie Additions‐/Kopf‐Schwanz‐Polymerisation von intermediär gebildeten Phosphanylboranen, RPH‐BH<sub>2</sub>: ein Weg zu Poly(alkylphosphanylboranen)
Cover Picture: Metal‐Free Addition/Head‐to‐Tail Polymerization of Transient Phosphinoboranes, RPH‐BH<sub>2</sub>: A Route to Poly(alkylphosphinoboranes) (Angew. Chem. Int. Ed. 46/2015)
Titelbild: Metallfreie Additions‐/Kopf‐Schwanz‐Polymerisation von intermediär gebildeten Phosphanylboranen, RPH‐BH<sub>2</sub>: ein Weg zu Poly(alkylphosphanylboranen) (Angew. Chem. 46/2015)
Tailored hierarchical micelle architectures using living crystallization-driven self-assembly in two dimensions
Large-Area Nanosquare Arrays from Shear-Aligned Block Copolymer Thin Films
Dimensional Control of Block Copolymer Nanofibers with a π‐Conjugated Core: Crystallization‐Driven Solution Self‐Assembly of Amphiphilic Poly(3‐hexylthiophene)‐<i>b</i>‐poly(2‐vinylpyridine)
Metal‐Containing Block Copolymer Thin Films Yield Wire Grid Polarizers with High Aspect Ratio
Square and Rectangular Symmetry Tiles from Bulk and Thin Film 3‐Miktoarm Star Terpolymers