Our latest paper on the breakdown of passive film on Ni is published in @NanoLetters. Congratulations to the team! The research is supported by @DARPA Stochastic Local Breakdown of Oxide Film on Ni from Identical-Location Imaging: One Single Site at a Time https://t.co/fy7HXaC8lG
Improving multiscale O2 transport revealed 3 orders of magnitude higher intrinsic O2 electroreduction activity in a 2D conductive MOF.
NEW #ASAP by Mircea Dincǎ, @Patrick_Unwin, & team @ChemistryMIT@warwickchem
Read here: https://t.co/Afp1oaxyT6
Happy to share our highlight piece of exciting work from @DincaGroupMIT @Patrick_Unwin in @ACSCentSci showing the importance of O2 mass transport in ORR with conducting MOFs!
The TOC was from me, inspired by Sonic the Hedgehog...yup😅
https://t.co/kzzlaET6mH
A real pleasure for @OluwasegunWahab and me to be involved in this collaboration with @rain__mariano, @DincaGroupMIT & team. As well as significance to MOFs, a nice example of importance of multiscale electrochemistry and mass transport to understand electrocatalysis generally.
MOFs are way more active electrocatalysts than previously suspected! Amazing work @rain__mariano, and collaborators @Patrick_Unwin https://t.co/U9Se9uzDrv this is likely general for MOFs and not just this one example! @TianyangChen7@Jules_Oppenheim
Even molecule-like active sites can take advantage of #BandMediated reaction mechanisms - Congrats to Will Howland for this comprehensive study and @Stahl_Lab for this fruitful collaboration!
We are looking to recruit an electrochemist interested in applying cutting edge echem techniques to synthetic processes. Collaboration between @Warwick_Echem & @PWilsonTeam and wider interactions with colleagues in @warwickchem, @ChemistryUoN & Lubrizol.
https://t.co/ufEHTFw0rb
I'm really excited to share my recent work on electrically conductive MOFs and CCPs (https://t.co/7qbDfL6rMJ). We (@DincaGroupMIT ) have previously shown that isostructural compositional tuning can modulate the conductivity of 2D MOFs, and now we've demonstrated the opposite!