At a Glance
- Tasks: Develop non-destructive diagnostic methods for lithium plating in batteries using advanced techniques.
- Company: Join WMG, a leading UK centre for battery research and manufacturing.
- Benefits: Gain hands-on experience, training, and £2,000 yearly for consumables and training.
- Other info: Access to major international facilities and unique networking opportunities.
- Why this job: Make a real impact on battery safety and performance while advancing your career.
- Qualifications: Passion for battery technology and willingness to learn advanced techniques.
The predicted salary is between 19350 - 23650 £ per year.
Lithium plating is among the most hazardous failure mechanisms affecting lithium-ion batteries under aggressive cycling conditions. It often initiates silently, yet can lead to catastrophic outcomes, and the sector urgently needs reliable methods to detect and understand it. At present, however, plating remains extremely difficult to measure non-destructively in industry-relevant cell formats. This leaves manufacturers and battery management system developers with limited data on which to define safe operating windows, while the computational models intended to predict plating-stripping dynamics remain under-constrained by a lack of experimental evidence. This project addresses that gap directly.
The successful candidate will develop a quantitative, non-destructive, in-situ diagnostic methodology for metallic lithium plating in industry-relevant cell formats. The approach is fundamentally based on diffraction and small-angle scattering techniques using both X-rays and neutrons, enabling the direct deconvolution of favourable bulk lithium-ion intercalation from unfavourable lithium plating. This multimodal combination probes the structural and spatial length scales relevant to the problem, with the sensitivity required to distinguish between the different forms of lithium present within a cell.
Beginning with single-layer pouch cells and then extending to larger cell formats, the student will systematically evaluate stimuli known to trigger plating, including cycling rate, negative-to-positive (N:P) electrode capacity ratio, low-temperature operation, generating quantitative data to underpin both safer operating protocols and more accurate predictive models.
Significance
Lithium plating sits at the intersection of battery safety, performance, and the broader drive towards faster charging and extended cell lifetimes. Establishing a robust, non-destructive detection methodology will have direct implications for cell design, the definition of safe operating windows, and the next generation of physics-based degradation models grounded in measured rather than assumed parameters. This project offers a rare combination of fundamental scientific depth and clear industrial relevance.
Benefits to the candidate
Beyond the scientific outcomes, the student will gain hands-on experience working at the Battery Scale-up Facility at WMG, one of the UK's leading centres for battery research and manufacturing, alongside access to major international X-ray and neutron facilities like the Diamond Light Source and ISIS Neutron and Muon Source. This combination of industrial-scale and large-facility experience provides a distinctive and highly transferable skill set, well suited to a future career in academic research, industrial R&D, or the wider battery and energy storage sector.
Training and development
The student will receive training in advanced X-ray and neutron diffraction and small-angle scattering techniques at major international facilities, alongside a thorough grounding in lithium-ion cell electrochemistry and degradation mechanisms. The project will involve experimental campaigns at central facilities and close collaboration with beamline scientists and industrial partners within WMG, equipping the student with a skill set highly sought after in both academic research and the battery industry. All researchers will also receive £2,000 per year to support training and consumables, alongside access to a bespoke Faraday Institution PhD Training Programme valued at approximately £5,000 per year. Recipients benefit from a wide range of development opportunities, including networking events, industry visits, mentorship, and internships, as well as high-quality training experiences designed to further develop their knowledge, skills, and career aspirations.
PhD Studentship: Catching Lithium Plating in the Act: Developing a non-destructive diagnostic t[...] in Coventry employer: PVH (Tommy Hilfiger/Calvin Klein)
Intapp is an exceptional employer, offering a dynamic work environment that fosters innovation and collaboration within the accounting and consulting sectors across EMEA. With a strong commitment to employee growth, Intapp provides ample opportunities for professional development and leadership coaching, ensuring that team members thrive in their careers while contributing to the company's strategic vision. The culture is built on accountability and high performance, making it an ideal place for those looking to make a significant impact in a rapidly evolving industry.
Contact Details:
PVH (Tommy Hilfiger/Calvin Klein) Recruitment Team
StudySmarter Expert Advice🤫
We think this is how you could land PhD Studentship: Catching Lithium Plating in the Act: Developing a non-destructive diagnostic t[...] in Coventry
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We think you need these skills to ace PhD Studentship: Catching Lithium Plating in the Act: Developing a non-destructive diagnostic t[...] in Coventry
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How to prepare for a job interview at PVH (Tommy Hilfiger/Calvin Klein)
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