ProfessorKate Jolliffe
Professor
Faculty of Science
Research projects & supervision summary
Kate has supervised >25 PhD, 3 MSc and 27 Honours students from 14 countries (Australia, Switzerland, France, China, Germany, Singapore, Japan, Ireland, Turkey, UK, Iran, Colombia, Bangladesh, India) and mentored >25 postdoctoral fellows. She has co-supervised >85 additional PhD students. Her current group comprises 1 Honours student, 5 PhD students and 4 postdoctoral fellows.
Research projects are currently available in the areas of suprmolecular chemistry and peptide and protein chemistry for students who can obtain their own scholarship fudning. For more detials on specific projects, please contact Prof Jolliffe via email.
RESEARCH PROJECTS & ACTIVITIES
- RESEARCH-BASED DEGREE SUPERVISIONActivity, Deliverability and Switchability of Synthetic Anion Receptors and Transporters
- RESEARCH-BASED DEGREE SUPERVISIONAdvancing methamphetamine profiling capabilities in Australia
- RESEARCH-BASED DEGREE SUPERVISIONAnion Receptors and Transporters for Biomedical Applications
- RESEARCH-BASED DEGREE SUPERVISIONAnionic phospholipid sensing
- RESEARCH-BASED DEGREE SUPERVISIONApplications of Anion Binding
- RESEARCH-BASED DEGREE SUPERVISIONChemoselective Reactions for the Functionalisation of Peptides and Proteins
- RESEARCH-BASED DEGREE SUPERVISIONChimeric Molecules for Targeted Protein Post-Translational Modifications
- RESEARCH-BASED DEGREE SUPERVISIONChiroptical Phenomena in Conjugated Systems
- RESEARCH-BASED DEGREE SUPERVISIONCyclic Carboxylate sensors
- RESEARCH-BASED DEGREE SUPERVISIONDesign and Synthesis of Fluorescent Probes with high affinity and selectivity for Carboxylate Metabolites and to apply these to studying the Metabolic profiles of cells
- RESEARCH-BASED DEGREE SUPERVISIONDevelopment and Application of Novel Receptors for Phosphatidylethanolamine and Pyrophosphate
- RESEARCH-BASED DEGREE SUPERVISIONDevelopment and Applications of Novel Anion Receptors
- RESEARCH-BASED DEGREE SUPERVISIONDevelopment of functionalised fluorophores for sensing applications
- RESEARCH-BASED DEGREE SUPERVISIONDevelopment of Natural and De Novo Discovered Peptides as Novel Anti-Infectives
- RESEARCH-BASED DEGREE SUPERVISIONDevelopment of natural product derived anti-Mtb agents for tuberculosis
- RESEARCH-BASED DEGREE SUPERVISIONDevelopment of new ligation methodologies to access challenging protein targets
- RESEARCH-BASED DEGREE SUPERVISIONDual Hydrogen Bond Donors for Anion Recognition
- RESEARCH-BASED DEGREE SUPERVISIONEngineering Macrocyclic Sulfopeptides to become LYTACs
- RESEARCH-BASED DEGREE SUPERVISIONEnhanced Protein Structural Analysis Using Chiral Cyclen-Lanthanide Complexes
- RESEARCH-BASED DEGREE SUPERVISIONExploiting Screening Technologies for the Discovery of Anti-Infective and Anti-Inflammatory Peptides
- RESEARCH-BASED DEGREE SUPERVISIONExploring Selective Anion Transport in Novel and Existing Small Molecules
- RESEARCH-BASED DEGREE SUPERVISIONExploring the in Vitro Behavior of Polymer Nanodiscs.
- RESEARCH-BASED DEGREE SUPERVISIONFluorescent assays for oxidative stress
- RESEARCH-BASED DEGREE SUPERVISIONFluorescent methods to detect and discover peptide and protein interactions in vitro
- RESEARCH-BASED DEGREE SUPERVISIONFrom Bench to Bedside: Fluorescent Sensor Arrays for Clinical Diagnostics