Issue 2 of EES Batteries is now published online and open access! Have a read through the issue here: https://t.co/O22Pvr1YOm and take a look at our cover articles from James Robinson (@uclchemeng), Peng Tan and @MccallaLab (@McGillChemistry) below!
Don’t miss the EES Batteries study by Maxime Blangero, Eric McCalla and colleagues on the impact of metal doping in cathodes using high-throughput experiments and machine learning. Read their work for free: https://t.co/lUQVJ47cU4
@mcgillu
Don’t miss the EES Batteries study by Maxime Blangero, Eric McCalla and colleagues on the impact of metal doping in cathodes using high-throughput experiments and machine learning. Read their work for free: https://t.co/lUQVJ47cU4
@mcgillu
In a recent perspective published in @JPhysChem, Eric presents the varied benefits of doping with over 60 different elements into battery materials. The outlook for braving the elements in this way is bright, particularly when coupled to machine-learning.
https://t.co/Ivl0UNIUnK
Electrodes with 100% active materials ¦ Eric McCalla discusses a new study on a sulfide-based cathode material for a radical redesign of all-solid battery electrodes with lower cost and cell design complexity. https://t.co/v0ZCAMTBLw
Submissions for the MRS Spring 2025 Symposium open Tuesday, Sept. 17! Join us in Seattle next April for exciting talks on lab automation and AI/ML in materials discovery. Alongside @ChrisJBartel, @MccallaLab, and @ ChenLing, we look forward to seeing you!
https://t.co/nuXvPCwNL1
Our first semiconductor paper is now published in @JMaterChem C!🚀 Together with Prof. Kirk Bevan, we explored the tunability of transport properties in semi-exfoliated AgxCoO2−δ (0.4 < x < 1) crystals. Great job Marc and team!
https://t.co/gRg2fkYhvJ
This work screened the effect of 52 different elements on Titanium Niobate to enhance its performance as high-power Li-ion anode in high-safety batteries
By Eric McCalla et al. @mcgillu
Read the paper 👉 https://t.co/5tVAL0t2oG
Lithium is used widely in batteries, but it's a finite resource. Now a team from @mcgillu@McGillChemistry has come up with a way to replace most of the lithium in batteries with sodium. https://t.co/Or3rGQg5bf #batteries#advancedmaterials
Our recent Sodium cathode paper is now out! 🚀 In this study, we systematically explored the benefits of Ni substitution in Na–Fe–Mn–O Cathodes.
Great job @MarziehAH and team!
https://t.co/x80rAP1lTR
What is holding up the ‘rust-salt’ battery? In a recent review in Energy & Environmental Science, we explore with our industrial partner @UmicoreGroup how air/moisture instability is preventing wide use of Mn,Fe-based layered oxides as Na-ion cathodes.
https://t.co/ZU1W5SjsY5
High-Throughput Electrochemistry for Reaction Optimization: A “home-made” reactor capable of running up to 24 individually controlled electrosyntheses https://t.co/Ojmt74ayuR
What? The McCalla lab does organic electrosynthesis? Only with great collaborators @MauzerollGroup, khaliullin and Canesi groups. Way to go @ant_juno and team!
https://t.co/UH0qNlimgl
Very excited to announce our latest work on garnet solid electrolytes published in Advanced Energy Materials. We demonstrate the consequence of doping on structure and show the wide tunability of numerous intrinsic properties needed for viable batteries.
https://t.co/cT8EVHwmAd