Fe3O4@SiO2/Kit-6 as a Magnetic Nano-Catalyst for the Synthesis of New Coumarin Fused Pyrrole Derivatives
Subject Areas :
Polymer
Elham Sadr
1
,
Hossein Anaraki-Ardakani
2
,
Soheil Sayyahi
3
,
Farzaneh Hosseini
4
1 - Department of Chemistry, Mahshahr Branch, Islamic Azad University, Mahshahr, Iran
2 - Department of Chemistry, Mahshahr Branch, Islamic Azad University, Mahshahr, Iran
3 - Department of Chemistry, Mahshahr Branch, Islamic Azad University, Mahshahr, Iran
4 - Department of Chemistry, Mahshahr Branch, Islamic Azad University, Mahshahr, Iran
Received: 2023-12-13
Accepted : 2023-12-13
Published : 2023-10-01
Keywords:
Aryl glyoxals,
Coumarin fused pyrrole,
4-aminocoumarin,
Multi-component reaction. ,
References:
Murray R, McKinnie S, Moore B, George Meroterpenoid natural products from Streptomycesbacteria – the evolution of chemoenzymatic syntheses. Nat Prod Rep. 2020;,37: 1334-1366
Lacy A, O'kennedy R. Studies on coumarins and coumarin-related compounds to determine their therapeutic role in the treatment of cancer. Current pharmaceutical design. 2004;10(30):3797-811.
Patil AD, Freyer AJ, Eggleston DS, Haltiwanger RC, Bean MF, Taylor PB, et al. The inophyllums, novel inhibitors of HIV-1 reverse transcriptase isolated from the Malaysian tree, Calophyllum inophyllum Linn. Journal of medicinal chemistry. 1993;36(26):4131-8.
Guilet D, Hélesbeux J-J, Séraphin D, Sévenet T, Richomme P, Bruneton J. Novel Cytotoxic 4-Phenylfuranocoumarins from Calophyllum d ispar. Journal of natural products. 2001;64(5):563-8.
Emami S, Dadashpour S. Current developments of coumarin-based anti-cancer agents in medicinal chemistry. European Journal of Medicinal Chemistry. 2015;102:611-30.
Keri RS, Sasidhar B, Nagaraja BM, Santos MA. Recent progress in the drug development of coumarin derivatives as potent antituberculosis agents. European journal of medicinal chemistry. 2015;100:257-69.
Jones G, Gilow HM, Low J. Regioselective photoaddition of pyrroles and aliphatic carbonyl compounds. A new synthesis of 3 (4)-substituted pyrroles. The Journal of Organic Chemistry. 1979;44(16):2949-51.
DL B. Boyce CW. Labroli MA. Sehon CA. Jin Q. J Am Chem Soc. 1999;121:54.
Yang X, Jing L, Chen Z. An efficient method for one-pot synthesis of 3-alkoxy-substituted chromeno [4, 3-b] pyrrol-4 (1 H)-one derivatives. Chemistry of Heterocyclic Compounds. 2018;54:1065-9.
Trost BM. The atom economy—a search for synthetic efficiency. Science. 1991;254(5037):1471-7.
Bienayme H, Hulme C, Oddon G, Schmidt P. Chem. sEur. J. 2000;6:3321.
Heidarpour M, Kiani M, Anaraki-Ardakani H, Rezaei P, Ghaleh SP, Ahmadi R, et al. New magnetic nanocomposite Fe3O4@ Saponin/Cu (II) as an effective recyclable catalyst for the synthesis of aminoalkylnaphthols via Betti reaction. Steroids. 2022:109170.
Orru RV, de Greef M. Recent advances in solution-phase multicomponent methodology for the synthesis of heterocyclic compounds. Synthesis. 2003;2003(10):1471-99.
Climent MJ, Corma A, Iborra S. Homogeneous and heterogeneous catalysts for multicomponent reactions. RSC advances. 2012;2(1):16-58.
Astruc D, Lu F, Aranzaes JR. Nanoparticles as recyclable catalysts: the frontier between homogeneous and heterogeneous catalysis. Angewandte Chemie International Edition. 2005;44(48):7852-72.
Lim CW, Lee IS. Magnetically recyclable nanocatalyst systems for the organic reactions. Nano Today. 2010;5(5):412-34.
Zheng X, Luo S, Zhang L, Cheng J-P. Magnetic nanoparticle supported ionic liquid catalysts for CO 2 cycloaddition reactions. Green Chemistry. 2009;11(4):455-8.
Ma C, Shao H, Zhan S, Hou P, Zhang X, Chai Y, et al. Bi-phase dispersible Fe3O4@ Au core–shell multifunctional nanoparticles: Synthesis, characterization and properties. Composite Interfaces. 2019;26(6):537-49.
Rossi LM, Costa NJ, Silva FP, Wojcieszak R. Magnetic nanomaterials in catalysis: advanced catalysts for magnetic separation and beyond. Green Chemistry. 2014;16(6):2906-33.
Koli RR, Phadatare MR, Sinha BB, Sakate DM, Ghule AV, Ghodake GS, et al. Gram bean extract-mediated synthesis of Fe3O4 nanoparticles for tuning the magneto-structural properties that influence the hyperthermia performance. Journal of the Taiwan Institute of Chemical Engineers. 2019;95:357-68.
Gill CS, Price BA, Jones CW. Sulfonic acid-functionalized silica-coated magnetic nanoparticle catalysts. Journal of Catalysis. 2007;251(1):145-52.
Samiei Z, Soleimani-Amiri S, Azizi Z. Fe 3 O 4@ C@ OSO 3 H as an efficient, recyclable magnetic nanocatalyst in Pechmann condensation: green synthesis, characterization, and theoretical study. Molecular Diversity. 2021;25:67-86.
Zeinali S, Fekri LZ, Nikpassand M, Varma RS. Greener syntheses of coumarin derivatives using magnetic nanocatalysts: recent advances. Topics in Current Chemistry. 2023;381(1):1.
Nikpassand M, Fekri LZ, Sahrapeima S, Shariati S. Synthesis of bis coumarinyl methanes using Fe3O4@ SiO2@ KIT-6 as an efficient and reusable catalyst. Letters in Organic Chemistry. 2016;13(8):578-84.
Fekri LZ, Maleki R. KIT‐6 Mesoporous silica‐coated magnetite nanoparticles: A highly efficient and easily reusable catalyst for the synthesis of benzo [d] imidazole derivatives. Journal of Heterocyclic Chemistry. 2017;54(2):1167-71.
Nikpassand M, Fekri LZ, Nabatzadeh M. Fe3O4@ SiO2@ KIT-6 as an Efficient and Reusable Catalyst for the Synthesis of Novel Derivatives of 3, 3'-((Aryl-1-phenyl-1H-pyrazol-4-yl) methylene) bis (1H-indole). Combinatorial Chemistry & High Throughput Screening. 2017;20(6):533-8.
Nikpassand M, Fekri LZ, Sanagou S. Green synthesis of 2-hydrazonyl-4-phenylthiazoles using KIT-6 mesoporous silica coated magnetite nanoparticles. Dyes and Pigments. 2017;136:140-4.
Abdolmohammadi S, Shariati S, Fard NE, Samani A. Aqueous‐Mediated green synthesis of novel spiro [indole‐quinazoline] derivatives using kit‐6 mesoporous silica coated Fe3O4 nanoparticles as catalyst. Journal of Heterocyclic Chemistry. 2020;57(7):2729-37.
Heidarpour M, Anaraki‐Ardakani H, Hasanzadeh N, Rayatzadeh A. Efficient synthesis of β‐aminoketones catalyzed by Fe3O4@ quillaja sapogenin/Ni (II) as a novel magnetic nano‐catalyst. Applied Organometallic Chemistry. 2020;34(10):e5834.
Kiani M, Anaraki-Ardakani H, Hasanzadeh N, Rayatzadeh A. Fe3O4@ saponin/Cd: a novel magnetic nano-catalyst for the synthesis of β-aminoketone derivatives. Journal of the Iranian Chemical Society. 2020;17(9):2243-56.
Khabazipour M, Shariati S, Safa F. SBA and KIT-6 mesoporous silica magnetite nanoparticles: Synthesis and characterization. Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry. 2016;46(5):759-65.
Saha M, Pradhan K, Das AR. Facile and eco-friendly synthesis of chromeno [4, 3-b] pyrrol-4 (1H)-one derivatives applying magnetically recoverable nano crystalline CuFe2O4 involving a domino three-component reaction in aqueous media. RSC advances. 2016;6(60):55033-8.
Khalili B, Jajarmi P, Eftekhari-Sis B, Hashemi MM. Novel one-pot, three-component synthesis of new 2-alkyl-5-aryl-(1 H)-pyrrole-4-ol in water. The Journal of organic chemistry. 2008;73(6):2090-5.