Individual projects

Individual projects

ESR7-S: Optical microscopy and microrheology of giant unilamellar vesicles interacting with nano-objects

Experimental investigation of unilamellar vesicles and their dynamics Description Experimental project on the morphological and mechanical changes in lipid vesicles caused by exposure to the nano-obje...

ESR8-S: Kinetics of nanoscale structural changes occurring in small unilamellar vesicles

Experimental investigation of unilamellar vesicles using microscopy techniques Contact Monika Kluzek Description Experimental project on small unilamellar lipid vesicles (SUV) interacting with nanopar...

ESR6-L: Atomistic and coarse-grained simulations of the interactions of nano-objects and biosurfactants with lipid bilayers

Objectives This project is focused on the study of the interactions of nano-objects and biosurfactants with lipid bilayers using continuum theory and atomistic and coarse-grained molecular dynamics si...

ESR5-L: Synthesis and characterization of functional biomimetic polymers for intracellular delivery

Chemical synthesis, characterisation of polymers and nano-objects Objectives This project is focused on development of functional biomimetic polymers which can traverse across cellular membranes to de...

ESR4-D: Molecular dynamics simulations of lipid bilayers and their interactions with nano-objects

Theoretical physics, theory in soft matter, computer simulations Contact Chanfei Su Objectives The challenge of this project is to understand the role of molecular properties of self-organized phosph...

ESR3-D: Monte Carlo simulations of lipid membranes and their interactions with copolymers

Theoretical physics, theory in soft matter, computer simulations Contact Ankush Checkervarty Objectives The challenge of this project is to rationalize the inter effective interactions between amphiph...

ESR2-T: Molecular simulation models of biomimetic polymers in lipid bilayers

Theoretical physics, theory in soft matter, computer simulations Contact Adrien Berthault Objectives The aim of this project is to understand the interactions of lipid membranes with nano-objects incl...

ESR1-T: Computer simulations of equilibrium structures of lipid membranes and nano-objects

Theoretical physics, theory in soft matter, computer simulations Contact Berardo Manzi Objectives The aim of this project is to understand the interactions of lipid membranes with nano-objects includi...

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