Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research interests include Covalent Organic Framework Applications, Metal-Organic Frameworks: Synthesis and Applications, Advanced Photocatalysis Techniques, and 2D Materials and Applications.
Insights into the mechanism of nitrate salt-mediated MgCO <sub>3</sub> formation
Molecular Mobility and Gas Transport Properties of Mixed Matrix Membranes Based on PIM-1 and a Phosphinine Containing Covalent Organic Framework
Structure and molecular mobility of phosphinine-based covalent organic frameworks – glass transition of amorphous COFs
Ein‐Topf‐Synthese von Schwefelkathoden mit hoher Kapazität durch In situ‐Polymerisation eines porösen Polymers auf Iminbasis
A Universal Synthesis Strategy for Tunable Metal‐Organic Framework Nanohybrids**
On the non-bonding valence band and the electronic properties of poly(triazine imide), a graphitic carbon nitride
Size Effects of the Anions in the Ionothermal Synthesis of Carbon Nitride Materials
Optimized Synthesis of Solution‐Processable Crystalline Poly(Triazine Imide) with Minimized Defects for OLED Application
Development of metal-free layered semiconductors for 2D organic field-effect transistors
Direct growth of crystalline triazine-based graphdiyne using surface-assisted deprotection–polymerisation
Optimierte Synthese von in Lösung verarbeitbarem kristallinem Poly(triazinimid) mit minimalen Defekten für OLED‐Anwendungen
Multifunctional Visible‐Light Powered Micromotors Based on Semiconducting Sulfur‐ and Nitrogen‐Containing Donor–Acceptor Polymer
Real-time optical and electronic sensing with a β-amino enone linked, triazine-containing 2D covalent organic framework
Directional Charge Transport in Layered Two‐Dimensional Triazine‐Based Graphitic Carbon Nitride
Sulfur- and Nitrogen-Containing Porous Donor–Acceptor Polymers as Real-Time Optical and Chemical Sensors
A π‐Conjugated, Covalent Phosphinine Framework
Directional Charge Transport in Layered Two‐Dimensional Triazine‐Based Graphitic Carbon Nitride
Exploring the “Goldilocks Zone” of Semiconducting Polymer Photocatalysts by Donor–Acceptor Interactions
Fluorescent Sulphur‐ and Nitrogen‐Containing Porous Polymers with Tuneable Donor–Acceptor Domains for Light‐Driven Hydrogen Evolution
Exploring the “Goldilocks Zone” of Semiconducting Polymer Photocatalysts by Donor–Acceptor Interactions
Anionic silicate organic frameworks constructed from hexacoordinate silicon centres
Twinned Growth of Metal‐Free, Triazine‐Based Photocatalyst Films as Mixed‐Dimensional (2D/3D) van der Waals Heterostructures
Triazine‐Based Graphitic Carbon Nitride: a Two‐Dimensional Semiconductor
Triazine‐Based Graphitic Carbon Nitride: a Two‐Dimensional Semiconductor
Exfoliation of Crystalline 2D Carbon Nitride: Thin Sheets, Scrolls and Bundles via Mechanical and Chemical Routes
Porous, Fluorescent, Covalent Triazine‐Based Frameworks Via Room‐Temperature and Microwave‐Assisted Synthesis
Porous organic cage crystals: characterising the porous crystal surface