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We have 11 Physical Chemistry (drug development) PhD Projects, Programmes & Scholarships

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Physical Chemistry (drug development) PhD Projects, Programmes & Scholarships

We have 11 Physical Chemistry (drug development) PhD Projects, Programmes & Scholarships

PhD in Chemistry - Amorphous Aggregates and Non-Classical Crystal Nucleation

You are invited to apply for a fully funded 3.5 year PhD position in the School of Chemistry, available to start on 1 October 2024 in the Ultrafast/slow Chemical Physics group at the University of Glasgow (https://www.wijnne.com/), with the aim to understand the role of amorphous structures in crystal nucleation. Read more

Predicting drug solubility in different solvents using molecular simulation and machine learning

Predicting the solubility of complex drug-like molecules is crucial at several stages of the drug discovery and manufacture. In particular, solvent selection has been highlighted as a crucial step in process design and optimisation [1]. Read more

Development of novel lipid nanoparticles (LNPs) for targeted gene delivery to cancer cells

Applications are invited for a self-funded, 3 year full-time PhD project. The PhD will be based in the School of Pharmacy and Biomedical Science and will be supervised by Dr Roja Hadianamrei and Dr Sassan Hafizi. Read more

Machine Learning and Molecular Modelling in Mass Spectrometry

This PhD project will harness the power of computational modelling and machine learning (A.I.) to analyse data obtained by mass spectrometry experiments and predict structural characteristics of biomolecules and their interactions. Read more

PhD in Chemistry: Medicinal Chemistry of Nucleotide Analogues

Nucleoside analogues (NAs) are an important class of antiviral and anticancer agents commonly used in the therapy of many different viral infections and cancer conditions. Read more

Structure-function relationships governing polyphenol bioactivity with respect to plasma membranes

This project aims to investigate polyphenol binding to lipid membrane surfaces with a view to understanding how polyphenol structure and aggregation within the gastrointestinal tract (GIT) affects the bioavailability of these nutraceuticals. Read more
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