collaborators

7 papers

cond-mat.mtrl-sci2026

Atomic-scale Imaging of Iodide-Gold Interactions in Nanoconfined Liquid-Solid Interfaces

Oliver R. Waszkiewicz, Yuxiang Zhou, Baptiste Gault +3

Functionalization of nanoporous metallic materials enables the tailoring of surface chemistry and morphology in nanostructured materials, optimising their performance for electroca…

cond-mat.mtrl-sci2026

3D atomistic imaging of polymer nanocomposites with Atom Probe Tomography: experimental methodology, preliminary results and future outlook

James O. Douglas, Reza Salehiyan, Aparna Saksena +5

The use of polymer nanocomposites as gas barrier materials has seen increasing interest, including applications involving hydrogen transport and storage. Better understanding of ga…

cond-mat.mtrl-sci2025

Quantifying Phase Transformations in Alloying Anodes via In-Situ Liquid Cell Hard X-ray Spectroscopy and Cryogenic Microscopy

Neil Mulcahy, Syeda Ramin Jannat, Yaqi Li +7

Understanding electrochemical phenomena at complex liquid solid interfaces requires linking real time structural dynamics with atomic scale interfacial chemistry. Here, we integrat…

cond-mat.mtrl-sci2025

Probing the Liquid Solid Interfaces of 2D SnSe MXene Battery Anodes at the Nanoscale

Lukas Worch, Kavin Arunasalam, Neil Mulcahy +5

Understanding degradation processes in lithium ion batteries is essential for improving long term performance and advancing sustainable energy technologies. Tin selenide (SnSe) has…

physics.ins-det2025

Filling the Gap: Atom Probe Tomography of Porous Structures Enabled by Site Specific SEMGlu Curing

Lukas Worch, James O. Douglas, Kavin Arunasalam +3

Porous microstructures, while central to many functional materials, remain difficult to characterize quantitatively by atom probe tomography (APT). Although several strategies have…

cond-mat.mtrl-sci2025

Degradation and SEI Evolution in Alloy Anodes Revealed by Correlative Liquid-Cell Electrochemistry and Cryogenic Microscopy

Neil Mulcahy, Syeda Ramin Jannat, Geri Topore +5

Understanding solid liquid interfaces at high spatial and chemical resolution is crucial for advancing electrochemical energy storage technologies, yet this remains a persistent ch…