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We have 61 Physical Chemistry (funded online) PhD Projects, Programmes & Scholarships

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Physical Chemistry (funded online) PhD Projects, Programmes & Scholarships

We have 61 Physical Chemistry (funded online) PhD Projects, Programmes & Scholarships

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Enzyme Cascades controlled in the Electrochemical Leaf for Discovery in Antimicrobial Strategy

Antibiotic discovery is usually aimed at single entities, for example a bacterial enzyme or efflux protein. This also means that antimicrobial resistance (AMR) mechanisms are considered in terms of the individual response, for example, mutations in a single target enzyme, affording resistance to the drug. Read more

Developing Electrically-switchable Glazing for Electric Vehicles

Project description. Lancaster University and Jaguar Land Rover are pleased to offer a fully-funded 3.5-year PhD position focused on the development of electrically-switchable glazing for electric vehicles. Read more

Understanding decoupled electrochemistry for energy storage, conversion and electrosynthesis

Background. Decoupled electrochemistry is broadly the process of using a mediating chargeable redox species to drive an electrochemical process with a freely dispersed catalyst instead of a reaction directly at an electrode. Read more

High-throughput solid state synthesis of functional inorganic materials for net zero applications

The discovery of new functional materials to drive technologies for the net zero transition, such as batteries, solar absorbers, rare-earth-free magnets for wind power and a myriad of other unmet needs, is a scientific and societal grand challenge. Read more

Taking Light Induced Electron Paramagnetic Resonance In Cell for Biological Structural Determination

Studying the structure of proteins and other biological systems is an important step in understanding their function. Most structural studies are conducted in environments that are far away from native conditions, such as those found inside a cell. Read more

Application of Linear-Scaling Quantum Mechanics Methods to Hydrogen Transport Through Complex Materials

Supervisory Team. Chris-Kriton Skylaris (80%) Jeremy Frey (20%). Project Description. The computational simulation of chemical reactions in materials requires an accurate, explicit description of their electrons. Read more

Machine learning analysis of large-scale crystal structure prediction

Supervisory Team:  Prof. Graeme Day. Project description. A fully funded 3.5-year PhD studentship is available in the area of computational materials discovery, as part of a prestigious international Synergy grant funded by the European Research Council. Read more

Dynamic behaviours of metal-organic frameworks and their guests

Self-funded applicants are invited to join our vibrant research community at the University of Birmingham's School of Chemistry for a PhD position focused on functional Metal-organic frameworks (MOFs). Read more

Organic Synthesis and Self-Assembly of State-Independent Electrolyte Materials

Ideal electrolytes for energy devices such as batteries and solar cells would (i) be lightweight and flexible, (ii) exhibit thermal stability, (iii) be non-volatile (to reduce fire risk), (iv) provide good interfacial contact with electrodes, (v) be amenable to processing and recycling, (vi) have high ionic conductivities, and (vii) be made from cheap, renewable feedstocks. Read more

Understanding shale rock swelling for energy systems: novel integrated modelling and experimental approaches

A fully funded PhD position is available in the group of Professor Carbone (Department of Chemistry) and Professor Taylor (Department of Earth Science) at the University of Manchester starting from September 2024. 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

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