Publication Cover
Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 43, 2013 - Issue 11
513
Views
19
CrossRef citations to date
0
Altmetric
Original Articles

Three-Component Coupling Synthesis of Diversely Substituted N-Aryl Pyrroles Catalyzed by Iron(III) Chloride

, , , &
Pages 1563-1570 | Received 26 Aug 2011, Published online: 06 Mar 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Ghasem Rezanejade Bardajee, Aseyeh Ghaedi, Hamideh Hazrati & Farnaz Jafarpour. (2020) An efficient synthesis of highly substituted functionalized pyrroles via a four-component coupling reaction catalyzed by Fe(III)-Schiff base/SBA-15. Inorganic and Nano-Metal Chemistry 50:12, pages 1213-1220.
Read now

Articles from other publishers (18)

Nassima Medjahed, Zahira Kibou, Amina Berrichi & Noureddine Choukchou-Braham. (2023) Advances in Pyrazoles Rings’ Syntheses by Heterogeneous Catalysts, Ionic Liquids, and Multicomponent Reactions - A Review. Current Organic Chemistry 27:6, pages 471-509.
Crossref
Thangavel Pavithra, Deepan Babu Rajkumar, Karthiyayini Gnanaoli, Sunnaghatta Nagaraja Sunil GowdaNagarajan Devipriya & C. Uma Maheswari. (2023) A Catalyst‐ and Solvent‐ Free Synthesis of Tetra‐Substituted Pyrroles by Multicomponent Reaction. ChemistrySelect 8:1.
Crossref
Dilek Akbaslar, E. Sultan Giray & Oztekin Algul. (2020) Revisit to the synthesis of 1,2,3,4-tetrasubstituted pyrrole derivatives in lactic acid media as a green solvent and catalyst. Molecular Diversity 25:4, pages 2321-2338.
Crossref
Yeming Wang, Chaoqun Zhang, Shizhe Li & Lihui Liu. (2021) Iron‐Catalyzed Synthesis of Pyrrole Derivatives and Related Five‐Membered Azacycles. European Journal of Organic Chemistry 2021:27, pages 3837-3849.
Crossref
Hedieh Rostami & Lotfi Shiri. (2021) Review on synthesis of pyrrole derivatives promoted by nanoparticles. Applied Organometallic Chemistry 35:6.
Crossref
Hedieh Rostami & Lotfi Shiri. (2020) Application of β ‐Nitrostyrene in Multicomponent Reactions for the Synthesis of Pyrrole Derivatives . ChemistrySelect 5:36, pages 11197-11220.
Crossref
H. Rostami & L. Shiri. (2019) Fe3O4@SiO2—CPTMS—Guanidine—SO3H-catalyzed One-Pot Multicomponent Synthesis of Polysubstituted Pyrrole Derivatives under Solvent-Free Conditions. Russian Journal of Organic Chemistry 55:8, pages 1204-1211.
Crossref
Li Li, Qi Chen, Xiaonan Xiong, Chuang Zhang, Jingjing Qian, Jie Shi, Qiong An & Ming Zhang. (2018) Synthesis of polysubstituted pyrroles via a gold(I)-catalyzed tandem three-component reaction at room temperature. Chinese Chemical Letters 29:12, pages 1893-1896.
Crossref
Yahya E. Jad, Santosh K. Gudimella, Thavendran Govender, Beatriz G. de la Torre & Fernando Albericio. (2018) Solid-Phase Synthesis of Pyrrole Derivatives through a Multicomponent Reaction Involving Lys-Containing Peptides. ACS Combinatorial Science 20:4, pages 187-191.
Crossref
Donghong Zhao, Yue Zhu, Shanshan Guo, Wenteng Chen, Guolin Zhang & Yongping Yu. (2017) A three-component one-pot synthesis of penta-substituted pyrroles via ring opening of α-nitroepoxides. Tetrahedron 73:20, pages 2872-2877.
Crossref
Aravind L. Gajengi & Bhalchandra M. Bhanage. (2016) NiO Nanoparticles: Efficient Catalyst for Four Component Coupling Reaction for Synthesis of Substituted Pyrroles. Catalysis Letters 146:8, pages 1341-1347.
Crossref
Kapil Kumar, Shital S. More, Sandeep Goyal, Mukesh Gangar, Gopal L. Khatik, Ravindra K. Rawal & Vipin A. Nair. (2016) A convenient synthesis of 4-alkyl-3-benzoylpyrroles from α,β-unsaturated ketones and tosylmethyl isocyanide. Tetrahedron Letters 57:21, pages 2315-2319.
Crossref
Rajni Khajuria, Sumita Dham & Kamal K. Kapoor. (2016) Active methylenes in the synthesis of a pyrrole motif: an imperative structural unit of pharmaceuticals, natural products and optoelectronic materials. RSC Advances 6:43, pages 37039-37066.
Crossref
Boby Samai, Soumen Sarkar, Sayantani Chall, Soumyadipta Rakshit & Subhash Chandra Bhattacharya. (2016) Polymer-fabricated synthesis of cerium oxide nanoparticles and applications as a green catalyst towards multicomponent transformation with size-dependent activity studies. CrystEngComm 18:40, pages 7873-7882.
Crossref
Ingmar Bauer & Hans-Joachim Knölker. (2015) Iron Catalysis in Organic Synthesis. Chemical Reviews 115:9, pages 3170-3387.
Crossref
Sandeep Goyal, Jatinkumar K. Patel, Mukesh Gangar, Kapil Kumar & Vipin A. Nair. (2015) Zirconocene dichloride catalysed one-pot synthesis of pyrroles through nitroalkene-enamine assembly. RSC Advances 5:5, pages 3187-3195.
Crossref
Verónica Estévez, Mercedes Villacampa & J. Carlos Menéndez. (2014) Recent advances in the synthesis of pyrroles by multicomponent reactions. Chem. Soc. Rev. 43:13, pages 4633-4657.
Crossref
Soumen Sarkar, Krishnendu Bera, Sukhendu Maiti, Srijit Biswas & Umasish Jana. (2013) ChemInform Abstract: Three‐Component Coupling Synthesis of Diversely Substituted N‐Aryl Pyrroles Catalyzed by Iron(III) Chloride.. ChemInform 44:31.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.