Pleased to share our @J_A_C_S paper on de novo pyrrole synthesis using O-vinylhydroxylamines. These reagents are versatile annulation partners for rapid, regioselective access to electron-deficient and highly substituted pyrroles under mild conditions. https://t.co/GbO4UUJsEP
We are glad to share our recent research article, 'Single-Flask Manganese(I)-Catalyzed Dienylation and Diels–Alder Cascade: Synthesis of Indole–Cyclohexene Hybrids with Anti-Inflammatory Activity' @ACSPublications@JOC_OL https://t.co/gkV7Llfr3i
Lutz Ackermann and colleagues have introduced a new class of chiral oxazoline ureas as κ²-N,O-preligands for enantioselective transition metal catalysis https://t.co/aCY7BivTvT
Glad to share our recent review article, 'Dioxazolones as electrophilic amide sources in copper-catalyzed and -mediated transformations' - Seungmin Lee et al. https://t.co/oQGZw2sXYH
#BJOC
Electrochemical Skeletal Indole Editing via Nitrogen Atom Insertion by Sustainable Oxygen Reduction Reaction (Lutz Ackermann and co-workers) @uniGoettingen@ResearchWohler@aztul#openaccess https://t.co/aAQdM8McAp
Interested in Sweet chemistry⚡Electrochemical Glycosylation via Halogen-Atom Transfer for C-Glycoside Assembly. Now in @ACSCatalysis. Well done @junwu, @rajesh_bpl7, Felix and @simonLHom! @ResearchWohler@uniGoettingen
https://t.co/HfdJZir420
https://t.co/S6qUFolRD1
Didn’t know a Wittig reaction could be enantioselective? Check out the latest instalment of our work in chiral lithium isothiourea boronates! https://t.co/bpoNKHn1KX
Ryan Shenvi and Vincent van der Puyl (@Shenvi_Lab) with a review on Mn-, Fe-, and Co-Catalyzed Radical Alkene Hydrofunctionalization in #ScienceOfSynthesis Base-Metal Catalysis (Ed. N. Yoshikai @ny_1978) #MHAT@scrippsresearch.
👉 https://t.co/GIKh2onnKE
Late-stage assembly of bifunctional compounds for PROTAC applications: Well done Daniele @antermite_d, Stig and all others 👍 Another great collaboration with @MagnusJJ_CH_LSF at @AstraZeneca , highlighting the great power of Ru-cat. C‒H activation
https://t.co/cQfKFNRfqW