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We have 10 Synthetic Chemistry (energy storage) PhD Projects, Programmes & Scholarships

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Synthetic Chemistry (energy storage) PhD Projects, Programmes & Scholarships

We have 10 Synthetic Chemistry (energy storage) PhD Projects, Programmes & Scholarships

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

Experimental study of ion transport in subsurface media for renewable energy storage

These projects are open to students worldwide, but have no funding attached. Therefore, the successful applicant will be expected to fund tuition fees at the relevant level (home or international) and any applicable additional research costs. Read more

PhD Studentship in Structural Battery Electrodes

Structural batteries, or structural materials that possess the ability to store and deliver electrical energy, could play a pivotal role in decarbonising challenging industries such as aviation, by integrating the power source within, say, the aeroplane fuselage itself. Read more
Last chance to apply

Utilising Sodium Borohydride for Hydrogen Export (2 PhD positions)

The Hydrogen Storage Research Group (HSRG) at Curtin University is involved in an ongoing research project with Velox Energy Materials to develop a solution for exporting hydrogen from Australia as a powder. Read more

Synthesis of Novel Organic Probes for the Study of Lipid-Lipid Interactions

Lipids are diverse and principal components of the cell and are involved in a vast array of processes ranging from their well-known structural importance in cell membranes, through to energy storage and participation in signalling pathways. Read more

New Materials for Solid-State Batteries

Rechargeable lithium-ion batteries are widely used in mobile applications. However, concerns about the availability of lithium and cobalt raw materials suggest alternative materials may be needed in future large-scale applications. Read more

Photonics for Net Zero Enabled by Patternable Boron-Phosphide Polymers

The manipulation of light in optoelectronic devices is a cornerstone for the delivery of Net Zero, for example in low-energy optical computing (silicon-photonics) and green hydrogen generation from water (photocatalysis). 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
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