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Alex Ganin

@bandgapwagon.bsky.social
111 followers 373 following 15 posts

AG and 🦎GECOS🦎 group hop on the bandgap wagon mostly between hydrogen, batteries, and low-power electronics in Glasgow Chemistry. www.gla.ac.uk/schools/chemistry/sta… All views and opinions are my own, not the UoG's.

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Alex Ganin @bandgapwagon.bsky.social · 05/05/2026
Room with a view. The other side of the NEED2D project meeting in @qmul.bsky.social
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Reposted by Alex Ganin
RSC Solid State Chemistry Group @rscsscg.bsky.social · 23/03/2026
To recognize young scholars producing outstanding PhD theses in the field of crystalline materials, the journal Crystals have awarded the Best PhD Thesis Award since 2023. Applications for this award are now open, with a deadline of 31 May 2026 www.mdpi.com/journal/crys...
mdpi.com
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Alex Ganin @bandgapwagon.bsky.social · 18/03/2026
Such a delight when speakers are willing to share unpublished data. Thank you, @annagslater.bsky.social, for an excellent talk at @uofgchem.bsky.social.
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Alex Ganin @bandgapwagon.bsky.social · 13/03/2026
Overhauled MOFs experiment for PGT labs and these are over now, with @forganross.bsky.social CDMOF-1 (left and centre with indicator) finally adsorbing a detectable amount of CO2.
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Alex Ganin @bandgapwagon.bsky.social · 11/03/2026
A great talk by Chris Collins @uofgchem.bsky.social on materials discovery in the age of AI and machine learning. Batteries and robotics included. Looking forward to a sequel from @annagslater.bsky.social in her next week's talk.
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Alex Ganin @bandgapwagon.bsky.social · 05/03/2026
This paper came out of probably the largest team I’ve ever worked with and some serious data analysis. Huge credit to a fantastic collaborators (pity none of the team except @profdraper.bsky.social here) for making the experiments possible. advanced.onlinelibrary.wiley.com/doi/10.1002/...
advanced.onlinelibrary.wiley.com
Lithiation‐Driven LiCrSe2 Shell Growth on Metallic CrSe2 Core Governs the Plateau–Slope Behavior
Layered CrSe2 is investigated as a lithium-ion battery cathode combining fast Li+ diffusion and structural reversibility. Calculations and experiments reveal a single topotactic intercalation process...
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Alex Ganin @bandgapwagon.bsky.social · 22/02/2026
When I talk to fresh PIs, I say an hour in the lab costs an hour of esteem. Of course I ignore my own advice. I’m unpacking that stubborn belief in my new substack, The Work Nobody Sees. But De Niro was probably onto something at the wheel of his taxi. groundinghour.substack.com/p/the-work-n...
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Alex Ganin @bandgapwagon.bsky.social · 20/02/2026
Like @martinlewis.moneysavingexpert.com I remain haunted by standing charges. Large He cylinders sit quietly like Preta, aka hungry ghosts, consuming budget relentlessly. For equipment rarely used, lecture bottles is a way stop feeding the cylinder charges ghosts.
Grey He lecture bottle connected to a gas regulator
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Alex Ganin @bandgapwagon.bsky.social · 17/02/2026
A lunar calendar page has turned on the window to the GECOS research office. In true academic style, it still bears a few traces of previous years. Happy New Year of the Horse!
A glassed door with a picture of a lunar calendar for the year of a horse.
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Alex Ganin @bandgapwagon.bsky.social · 16/02/2026
Why XRF is so underused in materials chemistry? It’s puzzling why we gravitate towards labor-intensive SEM/EDX when even benchtop XRF gives composition in minutes. If the group is arguing about mystery white powder on balances, no gold sputtering is required as XRF is indifferent to surface charge.
Photo of a benchtop XRF spectrometer with a sample changer for 10 samples.
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Alex Ganin @bandgapwagon.bsky.social · 13/02/2026
klementoninvesting.substack.com/p/fortune-tellers notes how superstition is woven into East Asian investing as a way of living with uncertainty. In the same spirit, hoping the CNYwill bring uniform deposition and monolayer growth. Time to add a lucky charm to our CVD reactors for the year of 🐎!
CVD reactor with GECOS group logo
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Alex Ganin @bandgapwagon.bsky.social · 11/02/2026
When your turbo pump goes Zzzeee, overheats, and flashes red, the initial reaction is like, “Oh no, the turbo ist kaputt.” A seasoned PI, “Right, need a new turbo.” A budget-conscious, “Nope, a new diaphragm pump.” You may discover Vacuubrand and Edwards differ mostly in colour. Turbo ist intakt.
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Alex Ganin @bandgapwagon.bsky.social · 09/02/2026
No better way to start on Bluesky! Delighted&proud to see this in ACS Catalysis! My former PhD student ran the show while I mentored from the sidelines. 10M NaOH at 95°C is a "trial by fire" for most HER catalysts, but these antiperovskites didn't flinch. pubs.acs.org/doi/abs/10.1...
pubs.acs.org
Antiperovskite Nitrides as Efficient and Durable Electrocatalysts for Industrially Relevant Hydrogen Evolution
Phase-pure antiperovskite nitrides (A3XN; A = Co, Ni; X = Zn, In, Sn) synthesized via a melamine method were evaluated as cost-effective, high-performance hydrogen evolution reaction (HER) electrocatalysts. Initial tests in 1 M NaOH electrolyte revealed limited activity, significantly enhanced by reductive electrochemical cycling, attributed to the in situ formation of catalytically active zero-valent Co0 and Ni0 surface species. Comparative studies of isostructural Fe-based nitrides confirmed that these metallic A-site species constitute the active sites. Accelerated stability tests (95 °C, 10 M NaOH) identified Co3ZnN and Ni3ZnN as particularly robust, maintaining intact antiperovskite structures and high catalytic activity (>70 mA cm–2 after 210 h). Partial substitution (Zn for In) further improved stability, notably for Ni3Zn0.25In0.75N. This study highlights the crucial role of compositional tuning and surface activation in optimizing HER performance, emphasizing that systematic stability assessments under industrially relevant conditions (high temperature, concentrated electrolyte) are essential. Antiperovskite nitrides thus offer promising avenues for scalable, green hydrogen production technologies.
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