Bryan Lucier
@bryan_lucier
Dr (the chemistry kind) and founder of Really Handsome Runners. Always willing to edit your scientific works, publications, and grants...for a price.
Metal-organic frameworks can selectively adsorb and separate gases...but where are the gases adsorbed in the system, how do the adsorbed gases move, and what host-guest interactions are in play? New preprint from the @westernuchem @WesternU Huang and Karttunen labs! #NMRchat
Stay Together or Split Up? Investigating Selective Adsorption of Carbon Dioxide and Acetylene in Anion-Pillared Microporous MOFs dx.doi.org/10.26434/chemr…
Great to see work from the @NationalMagLab in collaboration led by the Huang group @westernuchem out in @J_A_C_S ! Check out cool 209Bi and 127I NMR of MOFs! If you think you have seen the broadest NMR spectra, think again. doi.org/10.1021/jacs.4… #chemtwittter #NMRchat
Benchmarking selective capture of trace CO2 from C2H2 using an amine-functionalized adsorbent nature.com/articles/s4146…
"Benchmarking selective capture of trace CO2 from C2H2 using an amine-functionalized adsorbent" is now in @NatureComms , detailing a new adsorbent with excellent properties for large-scale industrial applications. There's NMR, FT-IR, DFT, and more! Link: doi.org/10.1038/s41467…

Local order, disorder, and everything in between: using 91Zr solid-state NMR spectroscopy to probe zirconium-based metal–organic frameworks pubs.rsc.org/en/Content/Art…
Great to see this out! Take a look at how we use Zr-91 solid-state NMR spectroscopy to look at Zr-based MOFs! #NMRchat #chemtwitter
The work below is now accepted in @PCCP ! This open-access study about how 91Zr NMR can be applied to investigate local structure in metal-organic frameworks can be found at: doi.org/10.1039/D4CP03… @westernuScience @zhang_wanli @NationalMagLab @amrit_venkatesh @aaronrossini
The work below is now accepted in @PCCP ! This open-access study about how 91Zr NMR can be applied to investigate local structure in metal-organic frameworks can be found at: doi.org/10.1039/D4CP03… @westernuScience @zhang_wanli @NationalMagLab @amrit_venkatesh @aaronrossini
A little @ChemRxiv sneak preview of a collaboration between the Huang group @westernuchem @westernuScience, @NationalMagLab, @amrit_venkatesh, and @aaronrossini: using 91Zr NMR spectroscopy to examine zirconium metal-organic frameworks. Great work from first author @zhang_wanli !
Local Order, Disorder, and Everything in Between: Using 91Zr Solid-State NMR Spectroscopy to Probe Zirconium-Based Metal-Organic Frameworks pubs.rsc.org/en/Content/Art…
It's happened: you can find me within the Blue App under the handle "bryanlucier," and I guess I'm supposed to link this too: bryanlucier.bsky.social I'll still check in here occasionally, and will certainly cross-post promoting my papers each and every time.
35Cl NMR of Metal‐Organic Frameworks: What Can We Learn? …mistry-europe.onlinelibrary.wiley.com/doi/10.1002/cm…
New in @ChemMethods from Huang Lab at @westernuScience : "35Cl NMR of Metal-Organic Frameworks: What Can We Learn?" Answers: Cl coordination, local geometry, bond character, hydrogen bonding, phase transitions, reaction products & more! Free read: doi.org/10.1002/cmtd.2… @nmr900

Using a variety of techniques, including NMR, XRD, cryo electron microscopy, and quantum chemical calculations, it was possible to understand and monitor the two routes of how this metal-organic framework reacts with water. The solvent in the as-made MOF plays an important role!
Our newest open-access work "Understanding Water Reaction Pathways to Control the Hydrolytic Reactivity of a Zn Metal-Organic Framework" is now published in @NatureComms . NMR, cryo-EM, and more! Thanks to @NationalMagLab and all authors. Check it out at doi.org/10.1038/s41467…
Our newest open-access work "Understanding Water Reaction Pathways to Control the Hydrolytic Reactivity of a Zn Metal-Organic Framework" is now published in @NatureComms . NMR, cryo-EM, and more! Thanks to @NationalMagLab and all authors. Check it out at doi.org/10.1038/s41467…

New NMR book @RoySocChemBooks December 18, 2024, New Developments in NMR, NMR of Metal–Organic Frameworks and Covalent Organic Frameworks, Edited by Wei Wang; Shoushun Chen; Yining Huang books.rsc.org/books/edited-v… #NMRbooks #NMRchat #NMR 🧲
Happy December 18th! This book is now in print and apparently already out of stock - the people are never wrong and this is a compelling read. Don't miss out! #NMRchat
You can pre-order this bad boy! It'll be the perfect gift for that NMR spectroscopist in your life, just in time for the holidays. Don't delay, act now! #NMRchat @nmr900 amazon.ca/NMR-Metal-Orga…
When a scientist retires, they should publish all of their unsuccessful grant applications. It is shocking how many good ideas are never funded and therefore dropped.
You can pre-order this bad boy! It'll be the perfect gift for that NMR spectroscopist in your life, just in time for the holidays. Don't delay, act now! #NMRchat @nmr900 amazon.ca/NMR-Metal-Orga…
I have a LOT more respect for editors and authors of book chapters after this recent endeavour. Let's just say that if you like solid-state NMR of MOFs and COFs, boy, do we have a page-turner in store for you soon...
Take a look at our collaborative work led by the Huang group @westernuchem where we performed 91Zr solid-state NMR to investigate local structure in MOFs and defects! #NMRchat #chemtwitter
A little @ChemRxiv sneak preview of a collaboration between the Huang group @westernuchem @westernuScience, @NationalMagLab, @amrit_venkatesh, and @aaronrossini: using 91Zr NMR spectroscopy to examine zirconium metal-organic frameworks. Great work from first author @zhang_wanli !
A little @ChemRxiv sneak preview of a collaboration between the Huang group @westernuchem @westernuScience, @NationalMagLab, @amrit_venkatesh, and @aaronrossini: using 91Zr NMR spectroscopy to examine zirconium metal-organic frameworks. Great work from first author @zhang_wanli !
Local Order, Disorder, and Everything in Between: Using 91Zr Solid-State NMR Spectroscopy to Probe Zirconium-Based Metal-Organic Frameworks dx.doi.org/10.26434/chemr…