
Rajib Mandal
@rajibm22
Postdoc @UCLA, PhD @Basker_IITK, MS @HydUniv
ID: 4479246866
https://scholar.google.co.in/citations?user=30V62-0AAAAJ&hl=en 06-12-2015 21:48:22
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Today we report in ChemRxiv a biocatalytic strategy for enantioselective amination of 3° C–H bonds, providing chiral α-tertiary primary amines with up to >99% e.e., all in challenging intermolecular and notorious Me–Et substituted settings, w/o DGs chemrxiv.org/engage/chemrxi…


Congratulations to Abir Das Rajib Mandal Harihara and Kumaran. Thanks to SERB for funding IIT Kanpur for infrastructure Chemistry_IITK Reversal of Regioselectivity in Asymmetric C ̶ H Bond Annulation with Bromoalkynes under Cobalt Catalysis - ACIE onlinelibrary.wiley.com/doi/10.1002/an…


"Ring expansion of indene by photoredox-enabled functionalized carbon-atom insertion" just published in Nature Catalysis by Glorius Group and the Gutierrez group. Free SharedIt link: rdcu.be/dvwRL nature.com/articles/s4192…

Superfast Formation of C(sp2)-N, C(sp2)-P, and C(sp2)-S Vinylic Bonds in Water Microdroplets (Elumalai Gnanamani and co-workers) #AngewandteVIP IIT Roorkee Stanford Chemistry onlinelibrary.wiley.com/doi/10.1002/an…

Happy to announce that our review on the Enantioselective C–H bond functionalization under Co(iii)-catalysis - now published in Chemical Communications Basker Lab IIT Kanpur Chemical Communications pubs.rsc.org/en/content/art…



"Check out our recent work Angewandte Chemie on asymmetric dearomatization of indole via C-H action under dual cobalt /photoredox catalysis! Congrats Abir Das Kumaran, Harihara, and Richard. Thanks serb for funding and IIT Kanpur for infra. #cobalt #chiral onlinelibrary.wiley.com/doi/10.1002/an…


Check out our recent article Nature Communications on reductive coupling of all(en)yl derivatives with alkyne under cobalt/photoredox catalysis. Congrats Subhankar Pradhan Dhananjay Satav! Thanks to Anusandhan National Research Foundation for funding & KAUST CATALYSIS CENTER (KCC) IIT Kanpur for infrastructure support! #cobalt #photoredox



Escherichia coli bacteria (E. coli) can convert a molecule derived from a waste plastic bottle into paracetamol, a pain medication also known as acetaminophen, according to a paper in Nature Chemistry. go.nature.com/3G8s966


Check out our recent work on 3,3-oxaspirocycles via cobalt-catalyzed cascade C-H activation and carboamidation of alkynes & alkenes Communications Chemistry Congratulations Bholanath garai rahamat. Thanks to IIT Kanpur for infra and Anusandhan National Research Foundation for funding. DFT by Richard Bishop heber college


Taking skeletal editing to the next level! Smart substrate designing from Marcos GarcĂa Suero group to demonstrate Rh-catalyzed atroposelective single-atom insertion, in J. Am. Chem. Soc. pubs.acs.org/doi/10.1021/ja…

Check out our J. Am. Chem. Soc. on accessing chiral C–N axes under cobalt catalysis! Congrats to Abir Das Pritam Maity Kumaran & J Richard Prem Kumar for DFT Thanks to IFCPAR/CEFIPRA for funding & @iitkanpur for infra shout out to lab Basker Lab Chemistry_IITK @director_iitk #asymmetric


An ideal reaction for organic chemistry textbook! #SimplifiedReactionConditions #Mechanism J. Am. Chem. Soc. pubs.acs.org/doi/10.1021/ja…