Synthesis 2025; 57(02): 417-424 DOI: 10.1055/a-2380-9676
paper
Special Topic Dedicated to Prof. H. Ila
An Acid-Mediated Multicomponent Domino Reaction for the Synthesis of N -Substituted Isoindolinones
Sudheer Kumar Karu∗
a
Polymers & Functional Materials Dept., CSIR-Indian Institute of Chemical Technology, Hyderabad, 500 007, India
b
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India
,
Meghanath Veludandi
a
Polymers & Functional Materials Dept., CSIR-Indian Institute of Chemical Technology, Hyderabad, 500 007, India
,
Chandrasekharam Malapaka∗
a
Polymers & Functional Materials Dept., CSIR-Indian Institute of Chemical Technology, Hyderabad, 500 007, India
b
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India
› Author Affiliations S.K.K. thanks the Council of Scientific & Industrial Research (CSIR), New Delhi for a senior research fellowship (SRF).
This article is dedicated to Prof. H. Ila, JNCASR, Bengaluru on the occasion of her 80th birthday. CSIR-IICT Communication no. IICT/Pubs./2024/205.
Abstract
A one-pot multicomponent reaction of 2-carboxybenzaldehyde, nitriles/anilines and a nucleophile (N ,N -disubstituted anilines) for the synthesis of a range of functionalized N -substituted isoindolinone derivatives is described. This metal-free intramolecular cyclization reaction furnishes the desired products in good to excellent yields. The process is environmentally friendly and offers a sustainable method for synthesizing a diverse library of N -substituted isoindolinone derivatives under acidic conditions. This cascade reaction triggers the formation of a C–C and two C–N bonds involving carbonyl and carboxyl groups in the presence of nitriles/anilines. Additionally, in the absence of a nitrogen source, 3-substituted isobenzofuran-1(3H )-ones are synthesized.
Key words
isoindolinones -
isobenzofuranones -
domino reaction -
multicomponent reaction -
atom economy -
step economy
Supporting Information
Supporting information for this article is available online at https://doi.org/10.1055/a-2380-9676.
Supporting Information
Publication History
Received: 13 June 2024
Accepted after revision: 06 August 2024
Accepted Manuscript online: 06 August 2024
Article published online: 19 September 2024
© 2024. Thieme. All rights reserved
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References
1
Gao W,
Chen M,
Ding Q,
Peng Y.
Chem. Asian J. 2019; 14: 1306
2
Upadhyay SP,
Thapa P,
Sharma R,
Sharma M.
Fitoterapia 2020; 146: 104722
3
Sorbera LA,
Leeson PA,
Silvestre J,
Castaner J.
Drugs Future 2001; 26: 651
4
Huskisson EC,
Scott J.
Rheumatology 1979; 18: 49
5
Csende F,
Porkolab A,
Matiz K,
Szabo Z,
Csorvassy I,
Frank L.
Sci. Pharm. 1999; 67: 149
6
Savela R,
Méndez-Gálvez C.
Chem. Eur. J. 2021; 27: 5344
7
Deniau E,
Enders D.
Tetrahedron Lett. 2000; 41: 2347
8
Anamimoghadam O,
Mumtaz S,
Nietsch A,
Saya G,
Motti CA,
Wang J,
Junk PC,
Qureshi AM,
Oelgemöller M.
Beilstein J. Org. Chem. 2017; 13: 2833
9
Youn SW,
Ko TY,
Kim YH,
Kim YA.
Org. Lett. 2018; 20: 7869
10
Kumar P,
Gupta M,
Bahadur V,
Parmar VS,
Singh BK.
Eur. J. Org. Chem. 2018; 1552
11
Jing K,
Cui P.-C,
Wang G.-W.
Chem. Commun. 2019; 55: 12551
12
Fu L.-Y,
Ying J,
Qi X,
Peng J.-B,
Wu X.-F.
J. Org. Chem. 2019; 84: 1421
13
Bal Reddy C,
Ram S,
Kumar A,
Bharti R,
Das P.
Chem. Eur. J. 2019; 25: 4067
14
Bai X.-F,
Mu Q.-C,
Xu Z,
Yang K.-F,
Li L,
Zheng Z.-J,
Xia C.-G,
Xu L.-W.
ACS Catal. 2019; 9: 1431
15
Zhang Y,
Zhu H,
Huang Y,
Hu Q,
He Y,
Wen Y,
Zhu G.
Org. Lett. 2019; 21: 1273
16
Wang L,
Liu X,
Liu J,
Shen J,
Chen Q,
He M.
Chem. Asian J. 2018; 13: 765
17
Ling F,
Li Z,
Zheng C,
Liu X,
Ma C.
J. Am. Chem. Soc. 2014; 136: 10914
18
Wertjes WC,
Wolfe LC,
Waller PJ,
Kalyani D.
Org. Lett. 2013; 15: 5986
19
Krishna Y,
Tanaka F.
Org. Lett. 2021; 23: 1874
20
Popovics-Tóth N,
Rávai B,
Tajti Á,
Varga B,
Bagi P,
Perdih F,
Szabó PT,
Hackler L,
Puskás LG,
Bálint E.
Org. Biomol. Chem. 2021; 19: 8754
21
Yuan S,
Wang S,
Zhao M,
Zhang D,
Chen J,
Li J.-X,
Zhang J,
Song Y,
Wang J,
Yu B.
Chin. Chem. Lett. 2020; 31: 349
22
Wang L,
Chen K,
Zhang M,
Ye M,
Qiao X.
Crit. Rev. Biotechnol. 2022; 42: 125
23
Hamed RB,
Gomez-Castellanos JR,
Henry L,
Ducho C,
McDonough MA,
Schofield C.
J. Nat. Prod. Rep. 2013; 30: 21
24
Yu M,
Gao Y,
Zhang L,
Zhang Y,
Zhang Y,
Yi H,
Huang Z,
Lei A.
Green Chem. 2022; 24: 1445
25
Zou Z,
Cai G,
Chen W,
Zou C,
Li Y,
Wu H,
Chen L,
Hu J,
Li Y,
Huang Y.
J. Org. Chem. 2021; 86: 15777
26
Li X.-H,
Gong J.-F,
Song M.-P.
Org. Biomol. Chem. 2021; 19: 5876
27
Lamblin M,
Couture A,
Deniau E,
Grandclaudon P.
Tetrahedron: Asymmetry 2008; 19: 111
28
Karu SK,
Malapaka C.
Eur. J. Org. Chem. 2023; 26: e202300481
29
Amaladass P,
Clement JA,
Mohanakrishnan AK.
Eur. J. Org. Chem. 2008; 3798
30
Voltrova S,
Srogl J.
Synth. Commun. 2015; 45: 2473
31
Meek ST,
Nesterov EE,
Swager TM.
Org. Lett. 2008; 10: 2991