KOKELAB
Molecular & Supramolecular Materials

Our research

We design and synthesise π-conjugated molecular and polymeric systems with precise structures across one, two and three dimensions, and explore how their molecular architecture controls self-assembly, electronic properties and function.

What we explore

Major research themes

Our research spans molecular synthesis, supramolecular chemistry and functional materials, connecting precise chemical structures with advanced properties and applications.

Molecular nanocarbons research at KokeLab
01
RESEARCH THEME 01

Molecular nanocarbons

We develop precisely defined π-conjugated carbon-rich molecules and low-dimensional architectures. Molecular design and synthesis allow us to control their structure, topology and electronic properties at the atomic scale.

Polycyclic aromatic hydrocarbons Nanographenes Graphene nanoribbons Fullerenes Carbon nanotubes
Supramolecular architectures research at KokeLab
02
RESEARCH THEME 02

Supramolecular architectures

We investigate how molecular recognition and non-covalent interactions can organise synthetic molecules into larger, functional architectures, bridging individual molecules and complex nanoscale materials.

Self-assembly Supramolecular polymers Mechanically interlocked structures Hybrid nanostructures
Conjugated polymers and frameworks research at KokeLab
03
RESEARCH THEME 03

Conjugated polymers & frameworks

We extend molecular design into two- and three-dimensional polymeric systems, creating ordered conjugated materials in which connectivity, porosity and electronic structure can be engineered through chemistry.

Conjugated polymers 2D materials 3D networks Covalent organic frameworks
Electronic and optoelectronic materials research at KokeLab
04
RESEARCH THEME 04

Electronic & optoelectronic materials

We translate molecular and supramolecular design into functional materials with tailored electronic and optical properties, including electron-deficient semiconductors and near-infrared absorbing and emitting systems.

Organic semiconductors NIR materials Molecular electronics Optoelectronics Energy applications
Discover our work

From molecular design to functional materials

Explore our publications to see how these research themes translate into new molecular structures, materials and applications.

Explore our publications