Ankush Banerjee
Affiliations: | 2014- | Indian Institute of Technology Kharagpur |
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Sign in to add mentorModhu Sudan Maji | grad student | 2014- | Indian Institute of Technology Kharagpur |
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Publications
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Banerjee A, Brisco TA, Zhang Z, et al. (2023) Modular Total Synthesis of the 5/5-Spirocyclic Spiroindimicins. Organic Letters |
Sahu S, Banerjee A, Kundu S, et al. (2022) Synthesis of functionalized indoles cascade benzannulation strategies: a decade's overview. Organic & Biomolecular Chemistry. 20: 3029-3042 |
Banerjee A, Saha S, Maji MS. (2022) Cascade Benzannulation Approach for the Syntheses of Lipocarbazoles, Carbazomycins, and Related Alkaloids. The Journal of Organic Chemistry. 87: 4343-4359 |
Kundu S, Banerjee A, Pal SC, et al. (2021) Cascade annulative π-extension for the rapid construction of carbazole based polyaromatic hydrocarbons. Chemical Communications (Cambridge, England) |
Kundu S, Banerjee A, Maji MS. (2019) A Brønsted Acid Catalyzed Tandem Pinacol-Type Rearrangement for the Synthesis of α-(3-Indolyl) Ketones by Using α-Hydroxy Aldehydes. The Journal of Organic Chemistry |
Banerjee A, Maji MS. (2019) A Brønsted Acid Catalyzed Cascade Reaction for the Conversion of Indoles into α-(3-Indolyl) Ketones Using 2-Benzyloxy Aldehydes. Chemistry (Weinheim An Der Bergstrasse, Germany) |
Banerjee A, Guin A, Saha S, et al. (2018) Formal [4 + 2] benzannulation of 2-alkenyl indoles with aldehydes: a route to structurally diverse carbazoles and bis-carbazoles. Organic & Biomolecular Chemistry |
Saha S, Banerjee A, Maji MS. (2018) Brønsted Acid Catalyzed One-Pot Benzannulation of 2-Alkenylindoles under Aerial Oxidation: A Route to Carbazoles and Indolo[2,3- a]carbazole Alkaloids. Organic Letters |
Sahu S, Banerjee A, Maji MS. (2017) Transition-Metal-Free Redox-Neutral One-Pot C3-Alkenylation of Indoles Using Aldehydes. Organic Letters |
Banerjee A, Sahu S, Maji MS. (2017) Benzannulation of 2-Alkenylindoles using Aldehydes by Sequential Triple-Relay Catalysis: A Route to Carbazoles and Carbazole Alkaloids Advanced Synthesis & Catalysis. 359: 1860-1866 |