Delighted to see this online. Unique surrogates help uncover the chemistry of #metathesis intermediates. Very humbling to work with super talented people: @S_Docherty, @z_berkson, Alex, Michael, @CoperetGroup, and especially with @KakiuchiYuya. Vielen Dank @snsf_ch for funding.
Check out our latest pre-print -- exploring the frontiers of solid-state NMR spectroscopy!
Solid-state 183W NMR spectroscopy as a high-resolution probe of polyoxotungstate structures and dynamics | ChemRxiv - https://t.co/Hao11fdzwJ
Absolutely beautiful work from my former colleagues at @UCSBChE and @BASF -- cutting-edge spectroscopy used to develop structure-function relations for an important class of heterogeneous catalysts
Direct Detection of Paired Aluminum Heteroatoms in Chabazite Zeolite Catalysts and Their Significance for Methanol Dehydration Reactivity | Journal of the American Chemical Society @ucsantabarbara#Detection#Al#Chabazite#Zeolite#Methanol#Dehydration https://t.co/JAHHFXETSH
Direct Detection of Paired Aluminum Heteroatoms in Chabazite Zeolite Catalysts and Their Significance for Methanol Dehydration Reactivity | Journal of the American Chemical Society @ucsantabarbara#Detection#Al#Chabazite#Zeolite#Methanol#Dehydration https://t.co/JAHHFXETSH
Open access from this week's issue: "Tailored Lewis Acid Sites for High-Temperature Supported Single-Molecule Magnetism" @Bernhardt_Mo @MDKorzynski@z_berkson@PointillartF@BGuennic@CoperetGroup
Read the full article ➡️ https://t.co/XczkpcCtny
Ran's collaborative @J_A_C_S paper on active site descriptors for Mo-based olefin metathesis is out today. Congrats! @CoperetGroup
https://t.co/82FaF5gLaR
Check out our recent publication out in JACS, a step towards unraveling the structure-function relations on surfaces. A great collaboration across ETH, MIT, and industry.
@CoperetGroup@mit_romangroup
https://t.co/RjpAmjgGpl
It is happening now. The ETH Zurich Chemical Engineering Medal goes to Prof. Avelino Corma. What an amazing teacher, scientist and technologist! @ETH_DCHAB
Excited to share this paper many years in the making! We provide mechanistic insights into heterogeneous olefin metathesis, offering a new strategy to enhance reaction rates. Wonderful collaboration with @CoperetGroup, now published in @Nature
https://t.co/GMWkaPkCJH
Promoting active site renewal in heterogeneous olefin metathesis catalysts | Nature. Check our latest work on Metathesis - great collaboration with our colleagues of MIT https://t.co/W5BJxnz2Ud
I'm really pleased to share our recent pre-print, the product of a great collaborative effort.
Active Site Descriptors from 95Mo NMR Signatures of Silica-supported Mo-based Olefin Metathesis Catalysts | ChemRxiv https://t.co/oA25W4UT3W
Really please to see this collaborative effort out in JACS Au
@CoperetGroup@JACS_Au
Solid-State NMR Spectra of Protons and Quadrupolar Nuclei at 28.2 T: Resolving Signatures of Surface Sites with Fast Magic Angle Spinning https://t.co/HKPljvS7Dz
Classifying and Understanding the Reactivities of Mo-Based Alkyne Metathesis Catalysts from 95Mo NMR Chemical Shift Descriptors https://t.co/8y6wX2A0Vw
Really nice to see this work out now in JACS Au @CoperetGroup
Olefin-Surface Interactions: A Key Activity Parameter in Silica-Supported Olefin Metathesis Catalysts https://t.co/Ob7ArZ9WiQ
Are you a fan of organometallic chemistry and surface science? Or just learning about the fascinating coordination chemistry enabled by surfaces of materials? Check out our recent chapter from Comprehensive Inorganic Chemistry III @CoperetGroup https://t.co/vCBQq6y6p8