Area of research
Electronic, Optical and Magnetic Materials · Spectroscopy
Research interest
Research interests include Liquid crystal, Bent molecular geometry, Materials science, Phase (matter), Twist, and Lipid bilayer.
Structural Insights into the Mechanical Behavior of Large-Area 2D Covalent Organic Framework Nanofilms
Insights into the Gelation Mechanism of Metal-Coordinated Hydrogels by Paramagnetic NMR Spectroscopy and Molecular Dynamics
Anomalously low twist and bend elastic constants in an oxadiazole-based bent-core nematic liquid crystal and its mixtures; contributions of spontaneous chirality and polarity
Cholesteric and screw-like nematic phases in systems of helical particles
Understanding the twist-bend nematic phase: the characterisation of 1-(4-cyanobiphenyl-4′-yloxy)-6-(4-cyanobiphenyl-4′-yl)hexane (CB6OCB) and comparison with CB7CB
Hierarchical Propagation of Chirality through Reversible Polymerization: The Cholesteric Phase of DNA Oligomers
Model studies of lipid flip-flop in membranes
Entropy-Driven Chiral Order in a System of Achiral Bent Particles
Molecular geometry, twist-bend nematic phase and unconventional elasticity: a generalised Maier–Saupe theory
Communication: From rods to helices: Evidence of a screw-like nematic phase
Left or right cholesterics? A matter of helix handedness and curliness
Passive Membrane Permeability: Beyond the Standard Solubility-Diffusion Model
Enantiotopic discrimination and director organization in the twist-bend nematic phase
The influence of structure on the elastic, optical and dielectric properties of nematic phases formed from bent-core molecules
The elastic and optical properties of a bent-core thiadiazole nematic liquid crystal: the role of the bend angle
The isotropic-to-nematic phase transition in hard helices: Theory and simulation
Controlling chirality with helix inversion in cholesteric liquid crystals
Understanding the distinctive elastic constants in an oxadiazole bent-core nematic liquid crystal
Flip-Flop of Steroids in Phospholipid Bilayers: Effects of the Chemical Structure on Transbilayer Diffusion