Projects

Computational Solutions in the Life Sciences: The Importance of Molecular Flexibility (CompSoLS-MolFlex)

CompSoLS-MolFlex utilizes state-of-the-art computational techniques to address the importance of molecular flexibility across a range of carefully selected examples from the life sciences.

Principal investigator: dr. sc. David Matthew Smith

Flexibility, activity and structure correlations in the dipeptidyl peptidase III family, (FlAcS, ID:7235)

Within the project frame we intend to investigate diversity in evolutionary conserved metallopeptidase family M49 (DPP III family) through characterization of catalytic, structural and dynamical properties of its members.

Principal investigator: dr. sc. Sanja Tomić

HrZZ project DESiRe (2014-2018): Low-temperature molecular dynamics of systems exhibiting lattice disorder probed by ESR

This project aims to improve the understanding of dynamical properties of disordered systems by fully exploiting the advantage of embedded paramagnetic centres through focusing on their relaxation behaviour, which bears the information about the local frustration of the environment.

NMR study of Pd(II) and Pt(II) Cyclometallated Complexes of Azobenzenes

East-NMR project, part of FP7 program

Principal investigator: dr. sc. Manda Ćurić