Area of research
Mechanics of Materials · Materials Chemistry
Research interest
Research interests include Metal and Thin Film Mechanics, Diamond and Carbon-based Materials Research, Polymer Nanocomposite Synthesis and Irradiation, and Ion-surface interactions and analysis.
Surface biofunctionalised porous materials: advances, challenges, and future prospects
Surface Bio‐engineered Polymeric Nanoparticles
Durable plasma-mediated zwitterionic grafting on polymeric surfaces for implantable medical devices
Mapping the microcarrier design pathway to modernise clinical mesenchymal stromal cell expansion
Tungsten Oxide Thin Films for Electrochromic Applications: Pulse Width‐Controlled Deposition by High‐Power Impulse Magnetron Sputtering
Reagent-free biomolecule functionalization of atmospheric pressure plasma-activated polymers for biomedical applications: Pathways for covalent attachment
Interfacial engineering for biomolecule immobilisation in microfluidic devices
Plasma surface functionalization: A comprehensive review of advances in the quest for bioinstructive materials and interfaces
Biofunctionalized 3D printed structures for biomedical applications: A critical review of recent advances and future prospects
Osteo-Immunomodulatory Role of Interleukin-4-Immobilized Plasma Immersion Ion Implantation Membranes for Bone Regeneration
Covalent Protein Immobilization on 3D‐Printed Microfiber Meshes for Guided Cartilage Regeneration
Pulse length selection in bipolar HiPIMS for high deposition rate of smooth, hard amorphous carbon films
Local activation of focal adhesion kinase orchestrates the positioning of presynaptic scaffold proteins and Ca2+ signalling to control glucose-dependent insulin secretion
Plasma Activation of Microplates Optimized for One-Step Reagent-Free Immobilization of DNA and Protein
Nanostructured AlCoCrCu0.5FeNi high entropy oxide (HEO) thin films fabricated using reactive magnetron sputtering
Noble gas control of diamond-like content and compressive stress in carbon films by arc-mixed mode high power impulse magnetron sputtering
RF magnetron sputtered AlCoCrCu0.5FeNi high entropy alloy (HEA) thin films with tuned microstructure and chemical composition
High entropy nitride (HEN) thin films of AlCoCrCu0.5FeNi deposited by reactive magnetron sputtering
A multifaceted biomimetic interface to improve the longevity of orthopedic implants
Hydrogel−Solid Hybrid Materials for Biomedical Applications Enabled by Surface‐Embedded Radicals
A review of biomimetic surface functionalization for bone-integrating orthopedic implants: Mechanisms, current approaches, and future directions
High entropy alloy thin films of AlCoCrCu0.5FeNi with controlled microstructure
Layer by layer coating for bio-functionalization of additively manufactured meta-biomaterials
Transparent Conductive Dielectric−Metal−Dielectric Structures for Electrochromic Applications Fabricated by High-Power Impulse Magnetron Sputtering
Bioactive Materials Facilitating Targeted Local Modulation of Inflammation
Radical-functionalized plasma polymers: Stable biomimetic interfaces for bone implant applications
Carbon films deposited by mixed-mode high power impulse magnetron sputtering for high wear resistance: The role of argon incorporation
Electric fields control the orientation of peptides irreversibly immobilized on radical-functionalized surfaces
Local Integrin Activation in Pancreatic β Cells Targets Insulin Secretion to the Vasculature
Plasma activated coatings with dual action against fungi and bacteria