UK date and time: 27-September- :53
Postdoctoral Researcher in Computing Modelling of Battery Cathode Materials
Rex Richards Building, Department of Materials
The Faraday Institution has funded a research consortium project entitled “Accelerated Development of Next Generation Li-Rich 3D Cathode Materials (3D-CAT)”.
This collaborative project between Oxford Materials (Prof Robert House (PI), Prof Saiful Islam, Prof Sir Peter Bruce), and UCL Chemical Engineering (Dr Rhod Jervis) brings together expertise in battery materials synthesis and device fabrication, advanced characterisation and materials modelling.
The overall ambition for this project is to carry out multidisciplinary research that will explore Li-rich three-dimensional cathodes free from Co and Ni and with energy densities exceeding LMFP and competitive with NMC.
A postdoctoral research position is now available on this 3D-CAT project in the area of computer modelling and materials design of lithium battery cathodes within the group of Professor Saiful Islam in the Department of Materials at the University of Oxford. The research programme at Oxford will investigate structural, redox, transport, and interface properties of Li-rich three-dimensional materials (including disordered rock salts) for lithium battery cathodes using advanced computational techniques based on density functional theory, molecular dynamics, cluster expansion, and machine learning.
This work will have strong links to the experimental synthesis, diffraction and electrochemical work performed in the overall project.
Previous experience in atomistic computer modelling of lithium battery materials or related energy materials and a recent track record of peer-reviewed publications are essential.
The position is available from 1st December 2026 or shortly thereafter and ends on 30th September 2028.
Group website with research details:
Prof Saiful Islam:
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Postdoctoral Researcher in Computing Modelling of Battery Cathode Materials in Oxford employer: Corehr
As a leading research institution, we offer an exceptional environment for postdoctoral researchers to thrive, particularly in the vibrant city of Liverpool. Our commitment to collaboration across prestigious universities fosters a dynamic work culture that prioritises innovation and inclusivity, while our hybrid working model supports a healthy work-life balance. With ample opportunities for professional growth and a focus on diversity, we are dedicated to creating a meaningful and rewarding experience for all employees.