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We have 10 Computational Chemistry (self) PhD Research Projects for Non-European Students

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I am a non-European student


Computational Chemistry (self) PhD Research Projects for Non-European Students

We have 10 Computational Chemistry (self) PhD Research Projects for Non-European Students

Programming Colloidal Self-Assembly for Advanced Materials

A PhD place is available with Dr Dwaipayan Chakrabarti in the School of Chemistry at the University of Birmingham on a project themed on designing and developing colloidal advanced materials, using high-performance computing, underpinned by theories of statistical mechanics and wave propagation in periodic structures. Read more

Reaction Monitoring and Structural Characterisation of Coordination Driven Self-Assembled Systems by Ion Mobility-Mass Spectrometry

Can you envisage a world where building a new catalyst or an artificial enzyme is like following an architectural plan for building a house? This is difficult as we don't even fully understand the construction materials! We research the properties of molecular building-blocks and their "constructed" aggregates, towards drawing up these type of blueprints. 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
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Accelerated Inorganic Materials Discovery Driven by Magnetic Resonance

This studentship will explore experimental and computational Nuclear Magnetic Resonance (NMR) spectroscopy approaches to probe the fast oxide ion transport (e.g., self-diffusion coefficients, diffusion pathways, dimensionality of motion) of oxide in inorganic materials aimed at establishing design rules for the discovery of next generation fast conductors. Read more

Computational Screening of Supercapacitors

In order to be self-sufficient with relatively constant energy output, renewable energy sources, such as solar and wind, require that energy be stored during periods of high energy production so that it can be available during periods of low or zero energy production. Read more

Modelling and Computation for Radiation Chemistry at Interfaces

This project is an interdisciplinary collaboration between Mathematics and Chemistry. Real-world applications include safe radioactive wate disposal, plutonium stewardship and radiation based cancer care. Read more
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