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Completed STUDENTSHIP UKRI Gateway to Research

Elastic and Self-Healing Artificial Interphases for Beyond-Lithium-Ion Batteries


Funder Industrial Strategy Challenge Fund
Recipient Organization University of Cambridge
Country United Kingdom
Start Date Jan 01, 2022
End Date Jun 29, 2025
Duration 1,275 days
Number of Grantees 2
Roles Student; Supervisor
Data Source UKRI Gateway to Research
Grant ID 2787954
Grant Description

Lithium metal-based batteries constitute a promising battery technology, offering higher energy densities. However, their application is hindered by rapid degradation and potential safety issues. The degradation of electrode-electrolyte interfaces during cell operation is one of the major challenges in the emerging beyond-lithium-ion batteries. We aim to overcome these issues by controlling Li plating and stripping through the application of a coating that inhibits dendritic lithium formation.

The project aims to develop a range of artificial interphases based on coating the electrodes with elastic and self-healing layers, aiming to reduce degradation. Our strategy is to pre-coat the electrodes with polymeric materials, which can adapt to volumetric changes and develop systems in which additives are combined with battery electrolytes to produce self-healing interphases.

The programme involves synthesising a range of new phosphazene polymers, their deposition on battery electrodes, electrochemical stability and cyclability characterisation, and post-cycling chemical analysis of the interphases. This study will provide a potential fundamental solution to the problems of lithium metal battery degradation. In addition, the strategy which will be explored is a potentially general one that could enable more sustainable, high-energy, and efficient battery technologies.

All Grantees

University of Cambridge

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