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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-sci20251 cited

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…

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…

cond-mat.mtrl-sci2025

A Workflow for Correlative in-situ Nano-chip Liquid Cell Transmission Electron Microscopy and Atom Probe Tomography Enabled by Cryogenic Plasma Focused Ion Beam

Neil Mulcahy, James O. Douglas, Syeda Ramin Jannat +5

Operando/in-situ liquid cell transmission electron microscopy (LCTEM) allows for real time imaging of dynamic nanoscale liquid-based processes. However, due to the thick liquid cel…

cond-mat.mtrl-sci2024

Look What You Made Me Glue: SEMGluTM Enabled Alternative Cryogenic Sample Preparation Process for Cryogenic Atom Probe Tomography Studies

Neil Mulcahy, James O Douglas, Michele Conroy

Extensive efforts over the past number of years have been applied to develop workflows for sample preparation of specimens for atom probe tomography at cryogenic temperatures. This…