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We have 464 Chemistry (funding) PhD Projects, Programmes & Scholarships

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Chemistry (funding) PhD Projects, Programmes & Scholarships

We have 464 Chemistry (funding) PhD Projects, Programmes & Scholarships

Protein self assembly induced by multivalent biological metabolites

In addition to being an energy source in biological reactions, recent discoveries suggest adenosine triphosphate (ATP) also plays a critical role in maintaining cell stability and preventing deleterious cellular processes through modulating biomacromolecular self assembly. Read more

High-throughput characterization and engineering of nucleotide synthases for production of nucleoside analogues

Nucleotides are the building blocks of life, modulating diverse processes from protein production to cell signalling. It is therefore unsurprising that synthetic nucleoside analogues have been developed as therapeutics for the treatment of a wide range of diseases including cancers and viral infections. Read more

Advancing hyperpolarised solid-state NMR spectroscopy for materials science

This PhD project is open to a wide range of research directions, depending on the interests and abilities of the candidate. The main topic will concern the application and development of methods for advanced NMR investigations of hyperpolarised solids. Read more

Sustainable processes – reducing single use plastics in healthcare

The burden of medical plastic waste has become an increasingly pressing concern in recent years. The healthcare industry relies heavily on single-use plastic items due to their convenience and hygiene factors, but this has led to a significant environmental problem. Read more

Developing novel light-induced in-situ Electron Paramagnetic Resonance (EPR) methods

Light-induced in-situ Electron Paramagnetic Resonance (EPR) studies are a growing field in both continuous wave and pulsed EPR. It can be used to monitor photoactivated chemical and biochemical reactions involving radical reagents, projects or intermediates. Read more

Membrane-less Redox Flow Batteries

This project will focus on the development of membrane-less redox flow battery systems for grid-scale energy storage. We will use novel aqueous electrolytes and new types of cell chemistries as well as “bespoke” systems based on organic molecules. Read more

Development of new retrosynthetic disconnections through radical-nucleophilic substitution

Background. Nucleophilic substitution is arguably the most important class of reaction in organic synthesis. Indeed, these reactions are used every day to synthesise new pharmaceuticals, agrochemicals, polymers and natural products. Read more

Development of polymerisation-induced self-assembly (PISA) systems for mechanochemical transformations

Block copolymers (BCPs) have potential in applications ranging from drug delivery to sensing or functional coatings due to their ability to form a wide range of controlled self-assembled nanostructures in solution. Read more

Cooperative catalysis using iron-based Organometallic frustrated Lewis pairs

Frustrated Lewis pairs (FLPs) has led to major advances in the field of small molecule activation and catalysis, being considered as one of the most exciting modern-day developments in main group chemistry. Read more

Investigating Nanoscale Network Polymer Degradation

  Research Group: Polymers and Composites
Network polymers are widely deployed as the matrix in structural composites and high-performance pigmented protective coatings. Surprisingly however, many fundamental aspects of how the properties and structure of these materials degrade upon exposure to the environment remains unknown. Read more

Metamaterials for catalysis

A meta-atom is an engineered sub-wavelength structure that, when periodically arranged like an atomic lattice, enable optical, electronic, thermal, and chemical functionalities not seen in conventional designs. Read more

New Methods for modelling cofactor-dependent enzyme structure and function

Enzymes are Nature’s catalysts and many used cofactors and/or coenzymes to catalyse their reactions. While AI and homology methods now often allow the useful prediction of protein structure from amino acid sequence, this can be more challenging when the protein/enzyme contain cofactors. Read more

Photoredox molecular editing for enhanced drug discovery

Molecular editing platforms, the process by which single atoms can be inserted or deleted selectively in or around a molecule’s skeleton, are transformative to synthetic chemists across industry and academia for the streamlined development of new drugs. Read more

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