Sort by
Refine Your Search
-
the process window for this technique across several materials and to assess the extent to which the patented material properties are realised. To identify the optimal processing conditions, a range of forging
-
of metrology, battery materials, and ceramic processing. Building on our previous demonstrations [1], this project will begin with the fabrication and characterisation of conventional electrolyte materials using
-
can be treated with a procedure called ‘catheter ablation’, which significantly reduces VT recurrence rates, reduces hospitalisations, and improves survival compared with medication alone. The goal
-
evolution at high temperature. The transition towards smarter, lower-carbon manufacturing demands new ways to understand and monitor how materials evolve during processing. This PhD project addresses a
-
PhD Studentship: Advancing solid-state battery electrolyte manufacturing with terahertz spectroscopy
, interdisciplinary research team working at the interface of metrology, battery materials, and ceramic processing. Building on our previous demonstrations [1], this project will begin with the fabrication and
-
validation to understand and optimise battery formation processes. The student will be based primarily at the University of Warwick, with a research and training placement of at least three months in Prof
-
, the student will systematically evaluate stimuli known to trigger plating, including cycling rate, negative-to-positive (N:P) electrode capacity ratio, and low-temperature operation, generating quantitative
-
by temperature, moisture, and oxygen, with particular emphasis on hydrolytic and thermo-oxidative ageing processes. Both short-term mechanical properties (e.g. tensile strength and impact resistance
-
several benefits, including thermal conductivity, electrical insulating and creating the necessary structural integrity needed around the battery. However, this process can be slow, induces an element of
-
interest include Ni-rich and LMFP (including blends) and anodeless formats. Research areas will include (but not limited to) determining the ideal electrode processing & formulations; identifying protocols