Dmitry Perekalin (@dmitryperekalin) 's Twitter Profile
Dmitry Perekalin

@dmitryperekalin

Organometallic chemist. Group leader at Nesmeyanov Institute, Russian Academy of Sciences. Make science, not war.

ID: 1752443414

linkhttp://dmitryperekalin.blogspot.com/ calendar_today07-09-2013 15:33:42

467 Tweet

432 Followers

159 Following

Dmitry Perekalin (@dmitryperekalin) 's Twitter Profile Photo

Nice method. Complimentary regioselectivity to classical rhodium and ruthenium catalyzed C-H activation reactions. pubs.acs.org/doi/10.1021/ac…

Nice method. Complimentary regioselectivity to classical rhodium and ruthenium catalyzed C-H activation reactions.
pubs.acs.org/doi/10.1021/ac…
Matsunaga Group 松永研究室 (@matsunagagroup) 's Twitter Profile Photo

Our new paper is out now in Angewandte Chemie! We revealed that manipulating the geometry of the directing group enables site-selective C(sp3)-H functionalization and controls the order of C(sp3)-H vs. C(sp2)-H functionalization. Congrats to Yuki and Shunsuke! doi.org/10.1002/ange.2…

Our new paper is out now in <a href="/angew_chem/">Angewandte Chemie</a>! We revealed that manipulating the geometry of the directing group enables site-selective C(sp3)-H functionalization and controls the order of C(sp3)-H vs. C(sp2)-H functionalization. Congrats to Yuki and Shunsuke!
doi.org/10.1002/ange.2…
Mathias Christmann (@christmanngroup) 's Twitter Profile Photo

AI-generated data tool analyzes 📊 3000+ SI PDFs: only 40% of papers w/ #MassSpec data fully comply with journal guidelines. Previously ChemRxiv, now on J Org Chem/Org Lett: pubs.acs.org/doi/10.1021/ac… #ChemPython #RealTimeChem

AI-generated data tool analyzes 📊 3000+ SI PDFs: only 40% of papers w/ #MassSpec data fully comply with journal guidelines. Previously <a href="/ChemRxiv/">ChemRxiv</a>, now on <a href="/JOC_OL/">J Org Chem/Org Lett</a>: pubs.acs.org/doi/10.1021/ac… #ChemPython #RealTimeChem
Dmitry Perekalin (@dmitryperekalin) 's Twitter Profile Photo

ChatGPT o1 is now actually solving PhD-level chemistry problems! For example, it proposes the correct mechanism for the exchange of oxygen atoms in [Ru(CO)6]+ in 18O-labeled water. The only thing that holds it back is the limited ability to work with structural formulas.

Dmitry Perekalin (@dmitryperekalin) 's Twitter Profile Photo

When reading a scientific paper in chemistry (or related fields), how often do you look only at the schemes (without reading the main text)?

Petr Beier🇨🇿🇪🇺🧪📝 (@petrbeier) 's Twitter Profile Photo

Fluorine substitution for hydrogen increases the stability of organic azides. Our new article in Chem. Commun. and front cover. pubs.rsc.org/en/content/art…

Fluorine substitution for hydrogen increases the stability of organic azides. Our new article in Chem. Commun. and front cover. pubs.rsc.org/en/content/art…
Michaudel Lab (@michaudellab) 's Twitter Profile Photo

Super excited to share this *radically* cool work from Deepta, En-Chih, Jeff, and Arunava on a general deaminative cross-coupling method guided by a unique ‘radical sorting’ mechanism. Congrats Team Deamination! Pre-print available now on ChemRxiv tinyurl.com/bdekw7ds

Super excited to share this *radically* cool work from Deepta, En-Chih, Jeff, and Arunava on a general deaminative cross-coupling method guided by a unique ‘radical sorting’ mechanism. Congrats Team Deamination! Pre-print available now on <a href="/ChemRxiv/">ChemRxiv</a> tinyurl.com/bdekw7ds
Dirk H. Trauner (@dirktrauner) 's Twitter Profile Photo

My first chemistry professor in Vienna, Erich Zbiral, shall not be forgotten. Everybody loves the Tanabe-Eschenmoser Fragmentation but the analogous Zbiral Fragmentation of epoxy vinyl azides is equally cool.

My first chemistry professor in Vienna, Erich Zbiral, shall not be forgotten. Everybody loves the Tanabe-Eschenmoser Fragmentation but the analogous  Zbiral Fragmentation of epoxy vinyl azides is equally cool.
Chusovgroup (@chusovgroup) 's Twitter Profile Photo

Recently we have noticed the literature trend and confirmed it together with Prof. Liao's research group through the discovery of one of the most active catalysts for polymerisation of caprolactone doi.org/10.1016/j.eurp…

Recently we have noticed the literature trend and confirmed it together with Prof. Liao's research group through the discovery of one of the most active catalysts for polymerisation of caprolactone
doi.org/10.1016/j.eurp…
Hayato Fujimoto (@fujimotohayato) 's Twitter Profile Photo

I really happy to share our lastest publication in J. Am. Chem. Soc. "Generation of Stereocenters via Single-Carbon-Atom Doping Using N-Isocyanides" Huge congrats to everyone involved! And excited to see my first paper as a corresponding author! pubs.acs.org/doi/10.1021/ja…

Dmitry Perekalin (@dmitryperekalin) 's Twitter Profile Photo

Our new paper on simple synthesis of planar-chiral ruthenium catalysts. We still need to optimize aryl substituent for good enantioselectivity. Thanks to editor and referees of Dalton Transactions for thoughtful and fast reviewing process (only 12 days!). pubs.rsc.org/en/content/art…

Our new paper on simple synthesis of planar-chiral ruthenium catalysts. We still need to optimize aryl substituent for good enantioselectivity.
Thanks to editor and referees of Dalton Transactions for thoughtful and fast reviewing process (only 12 days!).
pubs.rsc.org/en/content/art…
Abdusalom Suleymanov (@abdusalom) 's Twitter Profile Photo

Merging azacoronene with helicenes has led to intriguing electroactive chiral structures and polymers. Our latest paper with Yucheng Fu Yucheng Fu and Swager Group just published in J Org Chem/Org Lett pubs.acs.org/doi/10.1021/ac…

Merging azacoronene with helicenes has led to intriguing electroactive chiral structures and polymers. Our latest paper with Yucheng Fu <a href="/ycfu1018/">Yucheng Fu</a> and <a href="/SwagerGroup/">Swager Group</a> just published in <a href="/JOC_OL/">J Org Chem/Org Lett</a> pubs.acs.org/doi/10.1021/ac…