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Electrochemistry (sustainability) PhD Projects, Programs & Scholarships

We have 12 Electrochemistry (sustainability) PhD Projects, Programs & Scholarships

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  Composition, Fate and Risk of Legacy Wastes in the Coastal Zone, Mining PhD (Funded)
  Prof K Hudson-Edwards, Dr R Crane, Dr A Jarvis, Dr W Mayes
Application Deadline: 18 March 2020

Funding Type

PhD Type

The University of Exeter’s College of Engineering, Mathematics and Physical Sciences is inviting applications for a fully-funded PhD studentship to commence in September 2020 or as soon as possible thereafter.
  EPSRC and SFI CDT in Sustainable Chemistry Atoms-2-Products: An Integrated Approach Fully funded 48-month PhD studentships

Funding Type

PhD Type

EPSRC and SFI CDT in Sustainable Chemistry. Atoms-2-Products. An Integrated Approach. Fully funded 48-month PhD studentships. The EPSRC and SFI Centre for Doctoral Training (CDT) in Sustainable Chemistry.
  ImplantSens: Enzyme immobilization and modelling
  Prof P N Bartlett
Application Deadline: 28 February 2020

Funding Type

PhD Type

Supervisor. Prof P N Bartlett. Project description. The studentship is funded by a Marie Skłodowska Curie European Training Network and the successful applicant will be appointed and paid as a fellow at the University.
  Machine learning enabled hybrid material design & synthesis for optoelectronic properties
  Dr I S Nandhakumar
Application Deadline: 31 August 2020

Funding Type

PhD Type

Supervisor. Dr Iris Nandhakumar. Co-supervisor Prof. Steve Beeby. Project description.
  Materials for Next-Generation Batteries
  Dr T Schoetz
Application Deadline: 31 August 2020

Funding Type

PhD Type

Supervisor. Theresa Schoetz. Co-supervisor Professor Themis Prodromakis. Project description.
  Activating Carbon Dioxide Utilising Atmospheric Pressure Gas Plasma
  Dr B Buckley, Dr F Iza
Application Deadline: 31 July 2020

Funding Type

PhD Type

This project will be part of the Doctoral Training Centre on Plasma interactions with Liquids. The Buckley group has embarked on a programme of research directed at carbon dioxide utilisation (CDU) and has reported initial efforts in the area.
  Electrochemically Driven Deoxydehydration Reactions
  Dr J Taylor
Application Deadline: 23 February 2020

Funding Type

PhD Type

A PhD position is available to work with Dr James Taylor at the University of Bath on a project focused on the development of new catalytic processes for the deoxydehydration of diols using modern electrosynthetic technology.
  Polymerising, depolymerising and repurposing using iron catalysis
  Dr Ruth Webster
Application Deadline: 23 February 2020

Funding Type

PhD Type

The Centre for Sustainable Chemical Technologies (CSCT) at the University of Bath has launched a joint PhD programme with Monash University, Australia.
  Synthetic Organic Electrochemical Methodology Development: Defluoro-functionalisation Reactions (iCASE)
  Dr A Lennox
Application Deadline: 28 February 2020

Funding Type

PhD Type

Applications are invited for a 4 year iCASE PhD studentship starting in October 2020 to work in the group of Dr Alastair Lennox (www.lennoxlab.com).
  Spectroscopy for Process Intensification and Optimisation - Fully funded 48-months PhD studentships

Funding Type

PhD Type

We are seeking to recruit highly motivated students who are eager to work in a multi-disciplinary team involving mathematicians, chemists, physicists, and engineers to develop fully automated multi-step flow photochemical and electrochemical manufacturing processes.
  Chemistry of the lithium-air battery
  Dr L Johnson
Application Deadline: 17 April 2020

Funding Type

PhD Type

Starting in the academic year 2020/2021, a role is available studying the reaction chemistry in the lithium-air battery. The lithium-air battery contains an air breathing cathode at which oxygen is reduced to lithium peroxide and a lithium metal anode.
  Redox mediators for Li-air batteries
  Dr G Newton
Application Deadline: 17 April 2020

Funding Type

PhD Type

Starting in the academic year 2020/2021, a role is available to develop molecular redox mediators for applications in beyond lithium-ion batteries.
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