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  • 2026

66. Divergent Rearrangement of Geminal-Substituted Cyclopropane: Access to Pyran and          Spirocyclopropane Scaffolds

 Umesh Godara, Nakshatra Banerjee, Rohan Bag, Apoorv Kushwaha, Thogluva Janardhanan Dhilip Kumar, Prabal Banerjee*; Org. Lett. 2026, 28, 7800−7806

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65. Rearrangement of Donor–Acceptor Cyclopropanes for the Synthesis of Substituted Cyclopentene Derivatives

Chandan Laru, Arijit Hazra, Prabal Banerjee*; J. Org. Chem. 2026, 91, 6596−6609

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64. Electrochemical Divergent Synthesis of Azetidines via Strain Release of 1‑Azabicyclo[1.1.0]butanes

Neelam Duhan, Shiv Dutt, Sumit K. Rastogi, Prabal Banerjee*; Angew. Chem. Int. Ed. 2026, 65, e5707597

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63. Electroreductive deconstruction and oxygenation of cyclic amines

Shiv Dutt, Neelam Duhan, Vikas Kale, Prabal Banerjee*; Green Chem., 2026, 28, 7982–7992

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62. Electroreductive Cross-Coupling of Cyclopropyl Ketones and Aryl Methyl Ketones to Access 1,2,4-Triarylbenzenes via Acid-Promoted Aromatization

Rohan Bag, Chandan Laru, Debarshi Saha, Rana Banerjee, Prabal Banerjee*; Org. Lett. 2026, 28, 4713−4718

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  • 2025

61. Electrochemical Functionalization of Alkenes with 1,3-Dicarbonyl Compounds via Radical Addition

Rakesh Kumar, Nakshatra Banerjee,  Suman Pal, Umesh Godara, Prabal Banerjee*; Org. Lett. 2025, 27, 6913-6918

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60. Strain-Releasing Hydrogenation of Donor–Acceptor Cyclopropanes and Cyclobutanes via Electrochemical Site Selective Carbonyl Reduction

​Nakshatra Banerjee, Rakesh Kumar, Biswadeep Manna, Prabal Banerjee*; J. Org. Chem. 2025, 90, 5890-5902

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59. (3+2) Annulation of Donor–Acceptor Cyclopropanes with Difluoroenoxysilanes: Syntheses of gem-Difluorocyclopentenes via α,α-Difluoroketone Scaffolds

Neeraj Yadav, Prabal Banerjee*; J. Org. Chem. 2025, 90, 4620–4632

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58. Electrochemical Ring Opening and [3 + 2] Cycloaddition of Aziridines: Access to 1,2-Bifunctionalized Products and Imidazolines

​Shiv Dutt, Neelam Duhan, Vikas Kale, Prabal Banerjee*; Org. Lett. 2025, 27, 989–994

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  • 2024

57. Electroredox N-Heterocyclic Carbene-Catalyzed Enantioselective (3 + 3) Annulation of Enals with 2-Naphthols

Vikas Kale, Sayan Shee, Shiv Dutt, Nidhi Sinha, Akkattu T.  Biju*, Prabal Banerjee*; Org. Lett. 2025, 27, 57–62

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56. Patent granted for METHOD FOR SYNTHESIZING AN ACETAMINOPHEN (Patent No. – 544372)

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55. Ring-Opening of Donor-Acceptor Cyclopropane Diester for the Synthesis of Oxime Esters and 2,3-Dihydroazete Ester

Neeraj Yadav, Kritika Verma, Arnab Das, Navpreet Kaur, Prabal Banerjee* ; Synthesis 2025,  57, 91-98

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54. Brønsted Acid-Catalyzed Cascade Ring-Opening/Cyclization of 3-Ethoxy Cyclobutanones to Access 2,8-Dioxabicyclo[3.3.1]nonane Derivatives

Arijit Hazra, Tanmay Kanji, Prabal Banerjee*; J. Org. Chem. 2024, 89, 8458-8467

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53. Diradical Polar Reactivity Induced by Electricity-Mediated Ground State Triplet Nitrenium Species

Nakshatra Banerjee, Apoorv Kushwaha, Shiv Dutt, Debarshi Saha, T. J. Dhilip Kumar, Prabal Banerjee*; Adv. Synth. Catal. 2024, 366, 3001–3009

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52. Electrochemical oxidative C–C bond cleavage of methylenecyclopropanes with alcohols

Rakesh Kumar , Shiv Dutt, Prabal Banerjee*; Chem. Commun., 2024, 60, 4246-4249

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51. Electrochemical Oxidative Dearomatization Strategy for Accessing Spiro[4.5]dienones and Derivatives

Rohan Bag, Nilima Priyadarsini Mishra, Debarshi Saha, Prabal Banerjee*; J. Org. Chem. 2024, 89, 2200–2211

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50. Donor-Acceptor Cyclopropanes in Organic Synthesis, Chapter 6

Editors: P. Banerjee and A. T. Biju; Wiley-VCH. 2024, ISBN: 978-3-527-3498-7.

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49. Organocatalytic Enantioselective (4+2) Annulation of Cyclopropane Carbaldehydes with 2-Mercapto-1-Arylethanones

Neeraj Yadav, Arijit Hazra, Priyanka Singh, Prabal Banerjee*; Adv. Synth. Catal. 2024, 366, 1113-1119

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48. Electrochemical 1,3-Oxofluorination of Gem-Difluoro Cyclopropanes: Approach to alpha CF3-Substituted Carbonyl Compounds

Shiv Dutt, Rakesh Kumar, Nakshatra Banerjee, Debarshi Saha, Prabal Banerjee*; Adv. Synth. Catal, 2024, 366, 526-532

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  • 2023

47. Organocatalytic (3+3)-cycloaddition of ortho-substituted phenyl nitrones with aryl cyclopropane carbaldehydes: a facile access to enantioenriched 1,2-oxazinanes.

Arijit Hazra, Asit Ghosh, Neeraj Yadav, Prabal Banerjee*; Chem. Commun., 2023, 59, 11133–11136

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46. Electrochemical Synthesis and Reactivity of Three-membered Strained Carbo-and Heterocycles

Rakesh Kumar, Nakshatra Banerjee, Pankaj Kumar, Prabal Banerjee*, Chem. Eur. J. 2023, 29, e202301594 

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45. Organocatalytic Activation of Donor–Acceptor Cyclopropanes: A Tandem (3 + 3)-Cycloaddition/Aryl Migration toward the Synthesis of Enantioenriched Tetrahydropyridazines

Arijit Hazra, Raghunath Dey, Apoorv Kushwaha, T. J. Dhilip Kumar, Prabal Banerjee*, Org. Lett. 2023, 25, 5470–5475

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44. Identification of diphenylurea derivatives as novel endocytosis inhibitors that demonstrate broad-spectrum activity against SARS-CoV-2 and influenza A virus both in vitro and in vivo

Nirmal Kumar, Irshad Maajid Taily, Charandeep Singh, Sahil Kumar, Raju S. Rajmani, Debajyoti Chakraborty, Anshul Sharma, Priyanka Singh, Krishan Gopal Thakur, Raghavan Varadarajan, Rajesh P. Ringe*, Prabal Banerjee*, Indranil Banerjee*; PLoS. Pathog. 2023, 19, 1-34 

43. Merging Two Strained Carbocycles: Lewis Acid Catalyzed Remote Site-Selective Friedel–Crafts Alkylation of in Situ Generated β-Naphthol

Arijit Hazra, Tanmay Kanji, Prabal Banerjee*; J. Org. Chem. 2023, 88, 960−971

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42. Electrochemical sulfinylation of phenols with sulfides: a metal- and oxidant-free cross-coupling for the synthesis of aromatic sulfoxides

Rakesh Kumar, Irshad Maajid Taily, Prabal Banerjee*; Chem. Commun., 2023, 59, 310–313

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  • 2022

41. Switchable Reactivity of Cyclopropane Diesters toward (3 + 3) and (3 + 2) Cycloadditions with Benzoquinone Esters

Navpreet Kaur, Pankaj Kumar, Arijit Hazra, Prabal Banerjee*; Org. Lett. 2022, 24, 8249–8254

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40. Accessing Complex Tetrahydrofurobenzo-Pyran/Furan Scaffolds via Lewis-Acid Catalyzed Bicyclization of Cyclopropane Carbaldehydes with Quinone Methides/Esters

Navpreet Kaur, Pankaj Kumar, Shiv Dutt, Prabal Banerjee*; J. Org. Chem. 2022, 87, 7905–7918

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39. α,β‑Unsaturated Carbonyls for One-Pot Transition-Metal-Free Access to 3,6-Dihydro‑2H‑pyrans

Pankaj Kumar, Navpreet kaur, Rakesh kumar, Prabal Banerjee*; J. Org. Chem. 2022, 87, 7167–7178

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38. Electricity mediated [3+2]-cycloaddition of N-sulfonylcyclopropanes with olefins via N-centered radical intermediates: access to cyclopentane analogs

Debarshi Saha, Irshad Maajid Taily, Nakshatra Banerjee, Prabal Banerjee*, Chem. Commun., 2022, 58, 5459–5462

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37. Direct Synthesis of Paracetamol via Site-Selective Electrochemical Ritter-type C-H Amination of Phenol

Irshad Maajid Taily, Debarshi Saha, Prabal Banerjee*, Org. Lett. 2022, 24, 2310-2314

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36. Aza-Oxyallyl Cation Driven 3-Amido Oxetane Rearrangement to 2-Oxazolines: Access to Oxazoline Amide Ethers of Phenol

Irshad Maajid Taily, Debarshi Saha, Prabal Banerjee*, J. Org. Chem, 2022, 87, 2155-2166

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For a complete list of publications, please visit the

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Indian Institute of Technology Ropar Department of Chemistry

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PB research group
 prabal@iitrpr.ac.in

This site is designed and maintained by Rohan Bag and Pallavi

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Indian Institute of Technology Ropar Department of Chemistry

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PB research group
 prabal@iitrpr.ac.in

This site is designed and maintained by Rohan Bag and Pallavi

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