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We have 32 Other (self) PhD Research Projects PhD Projects, Programmes & Scholarships

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Other (self) PhD Research Projects PhD Projects, Programmes & Scholarships

We have 32 Other (self) PhD Research Projects PhD Projects, Programmes & Scholarships

Self-regulating, self-cleaning biomaterials

A major problem associated with medical devices is infection. With infection rates of approaching 100% in some devices, ways to prevent formation of bacterial biofilm on medical device surfaces are urgently required. 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

Electrochemically switchable materials down to the single molecule level

This project will study the electrochemical properties of materials down to the single molecule level and it will investigate how electrochemical (redox state) switching of the molecules can change useful materials properties. Read more

PhD in Supramolecular Chemistry: Metallo-Peptide Cages - Peptides as Adaptable Building Blocks in Metal-Organic Supramolecular Self-Assembly

We are a synthetic chemistry group working in supramolecular and biological chemistry, and nanotechnology. We work in the Francis Crick Institute in London, and at King's College London - find more details at https://www.mcternanresearchgroup.com/. Read more

Oxidic Nanomaterials for High Density Storage in Li-ion Batteries

  Research Group: Chemistry and Biosciences
The oxides of a number of materials are very appealing candidates as substitutes for conventional anodes in lithium-ion batteries because of their high theoretical capacity, high electric conductivity low potential of lithium ion intercalation, as well as superior electron mobilities, with one such material, SnO2 being particularly appealing. Read more

Atomistic Simulations of Surface Chemistry underpinning the Atomic-Scale Processing of Materials for AI-driven Nanoelectronics Applications

Project description. Atomic layer deposition (ALD) and atomic layer etching (ALE) are crucial technologies in semiconductor processing, especially as nanoelectronics devices become smaller and more complex. Read more

Accelerated Discovery of Next Generation Polymers Using Artificially Intelligent Reactor Platforms

  Research Group: School of Chemical and Process Engineering
The application of digital technologies is transforming the discovery and manufacturing process within materials science. This therefore represents perhaps the only opportunity to address the urgent need for new sustainable, high performing materials to facilitate more efficient processes (e.g. Read more

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