Alakesh Bisai

Affiliations: 
2009-2020 IISER Bhopal 
 2020- IISER Kolkata 
Area:
Organic synthesis, natural products chemistry, chemical biology
Website:
http://home.iiserb.ac.in/~alakesh/alakesh.html
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"Alakesh Bisai"
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Parents

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Vinod K Singh grad student 2006 IIT Kanpur
Richmond Sarpong post-doc 2006-2009 UC Berkeley

Children

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Kundan Shaw grad student IISER Bhopal
Vipin Gavit grad student 2016- IISER Bhopal
Arindam Maity grad student 2016- IISER Bhopal
Satyajit Majumder grad student 2017- IISER Bhopal
Arindam Khatua grad student 2018- IISER Bhopal
Sourav Kundu grad student 2018- IISER Bhopal
Mintu Munda grad student 2018- IISER Bhopal
Rhituparna Nandi grad student 2018- IISER Bhopal
Souvik Pal grad student 2018- IISER Bhopal
Rahul Giri grad student 2019- IISER Bhopal
Ayan Mondal grad student 2019- IISER Bhopal
Sovan Niyogi grad student 2019- IISER Bhopal
Abhinay Yadav grad student 2019- IISER Bhopal
Debgopal Jana grad student 2020- IISER Kolkata
Ranjit Murmu grad student 2020- IISER Kolkata
Pranay Shamal grad student 2020- IISER Kolkata
Saikat Chaudhuri grad student 2012-2017 IISER Bhopal
Nivesh Kumar grad student 2012-2018 IISER Bhopal
Amarchand Parida grad student 2013-2018 IISER Bhopal
Mrinal Kanti Das grad student 2013-2019 IISER Bhopal
Avishek Roy grad student 2015-2020 IISER Bhopal
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Publications

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Sharma S, Roy A, Shaw K, et al. (2020) Electrochemical Synthesis of Dimeric 2-Oxindole Sharing Vicinal Quaternary Centers Employing Proton-Coupled Electron Transfer. The Journal of Organic Chemistry
Maity A, Roy A, Das MK, et al. (2020) Oxidative cyanation of 2-oxindoles: formal total synthesis of (±)-gliocladin C. Organic & Biomolecular Chemistry
Babu KN, Roy A, Singh M, et al. (2018) Thiourea-Catalyzed Enantioselective Malonate Addition onto 3-Sulfonyl-3'-indolyl-2-oxindoles: Formal Total Syntheses of (-)-Chimonanthine, (-)-Folicanthine, and (+)-Calycanthine. Organic Letters
Naresh Babu K, Kariyandi NR, Saheeda M K S, et al. (2018) Lewis Acid-Catalyzed Malonate Addition onto 3-Hydroxy-2-oxindoles: Mechanistic Consideration and Synthetic Approaches to the Pyrroloindoline Alkaloids. The Journal of Organic Chemistry
Kumar N, Maity A, Gavit VR, et al. (2018) A catalytic N-deacylative alkylation approach to hexahydropyrrolo[2,3-b]indole alkaloids. Chemical Communications (Cambridge, England)
Kumar N, Gavit VR, Maity A, et al. (2018) Pd(0)-Catalyzed Chemoselective Deacylative Alkylations (DaA) of N-Acyl-2-oxindoles: Total Syntheses of Pyrrolidino[2,3-b]indoline Alkaloids, (±)-Deoxyeseroline and (±)-Esermethole. The Journal of Organic Chemistry
Das MK, Kumar N, Bisai A. (2018) Catalytic Asymmetric Total Syntheses of Naturally Occurring Amarylidaceae Alkaloids, (-)-Crinine, (-)- epi-Crinine, (-)-Oxocrinine, (+)- epi-Elwesine, (+)-Vittatine, and (+)- epi-Vittatine. Organic Letters
Babu KN, Kinthada LK, Pratim Das P, et al. (2018) Cu(ii)-Bu-PHOX catalyzed enantioselective malonate addition onto 3-hydroxy 2-oxindoles: application in the synthesis of dimeric pyrroloindoline alkaloids. Chemical Communications (Cambridge, England)
Bhunia S, Chaudhuri S, De S, et al. (2018) An expeditious route to the synthesis of the enantioenriched tetracyclic core of ergot alkaloids via an organocatalytic aldol reaction. Organic & Biomolecular Chemistry
Chaudhuri S, Ghosh S, Bhunia S, et al. (2018) Catalytic asymmetric formal total syntheses of (+)- and (-)-cycloclavine. Chemical Communications (Cambridge, England)
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