Area of research
Biomedical Engineering · Catalysis
Research interest
Research interests include Ionic liquids properties and applications, Carbon dioxide utilization in catalysis, Carbon Dioxide Capture Technologies, and Fluid Dynamics and Mixing.
Hydration dynamics of hydrocolloid particles - Part 2: Molecular dynamics simulation and correlation of self-diffusion coefficients with water vapor sorption kinetics
Swelling and dissolution of starch granules in water under low and high shear mixing
Hydration dynamics of hydrocolloid Particles. Part 1: Experimental investigation of water vapor sorption and bulk diffusion
Toward small, stable, and physically robust radiotracers for positron imaging
Effect of high-pressure spray spatiotemporal interaction on combustion and emissions in a large-bore locomotive methanol/diesel dual-fuel engine
Ternary composite nanoparticles to improve the water solubility and stability of resveratrol:Preparation, characterization and bioavailability
Microencapsulation of L-carvone and hexyl salicylate in carnauba wax, candelilla wax and beeswax by melt dispersion method
Nonspherical Particle Stabilized Emulsions Formed through Destabilization and Arrested Coalescence.
Evaluation of gum arabic and gelatine coacervated microcapsule morphology and core oil encapsulation efficiency by combining the spreading coefficient and two component surface energy theory
Multicore silica microcapsules containing α-tocopherol for potential consumer product applications
Regulation of the interaction between carboxymethyl starch and whey protein isolate by tannin: Effects on their colonic targeting and stimulation of satiety hormone secretion.
Dissolved bubble microneedle patches for co-delivery of hydrophobic and hydrophilic drugs to improve acne vulgaris therapy.
Structural regulation of carboxymethyl starch/whey protein isolated coacervate microcapsules for colon-targeted delivery of oleoylethanolamine and promotion of satiety hormones secretion
Ecolor: Synthesis of EInk Microcapsules for Fabricating DIY Displays
Atomic force microscope protocols for characterising the elastoviscoplastic biomechanical properties of corneocytes.
Self-Assembled Microplastic-Free Microcapsules Using Aromatic Bis-Ureas with Improved Strength and Tunable Barrier Properties for Encapsulating Cinmethylin.
Microscale Delivery Systems for Hydrophilic Active Ingredients in Functional Consumer Goods.
Organic-Inorganic Multilayer Microcarriers with Superior Mechanical Properties for Potential Active Delivery in Fast-Moving Consumer Goods.
Current Challenges in Microcapsule Designs and Microencapsulation Processes: A Review.
Transdermal Microneedles Alleviated Rheumatoid Arthritis by Inducing Immune Tolerance via Skin-Resident Antigen Presenting Cells.
Magnetic zinc oxide/silica microbeads for the photocatalytic degradation of azo dyes
Transdermally delivered tolerogenic nanoparticles induced effective immune tolerance for asthma treatment.
The effects of hydration on the topographical and mechanical properties of corneocytes.
Eco-Friendly Fungal Chitosan-Silica Dual-Shell Microcapsules with Tailored Mechanical and Barrier Properties for Potential Consumer Product Applications.
Microplastic-Free Microcapsules Using Supramolecular Self-Assembly of Bis-Urea Molecules at an Emulsion Interface.
Selective recognition of PTRE1 transcripts mediated by protein–protein interaction between the m6A reader ECT2 and PTRE1
Two-directional trafficking of the IFT25 protein in the developing mouse sperm flagella
Lego-Inspired Glass Capillary Microfluidic Device: A Technique for Bespoke Microencapsulation of Phase Change Materials.
Relationship between the Young's Moduli of Whole Microcapsules and Their Shell Material Established by Micromanipulation Measurements Based on Diametric Compression between Two Parallel Surfaces and Numerical Modelling.
Characterisation of topographical, biomechanical and maturation properties of corneocytes with respect to anatomical location.