Publication Cover
Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 38, 2008 - Issue 6
300
Views
42
CrossRef citations to date
0
Altmetric
Original Articles

Synthesis of Bis(indolyl)methanes using a Catalytic Amount of ZnO under Solvent‐Free Conditions

Pages 832-840 | Received 30 May 2007, Published online: 22 Feb 2008

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

Read on this site (5)

Gagandeep Kour Reen, Monika Ahuja, Ashok Kumar, Rajesh Patidar & Pratibha Sharma. (2017) ZnO Nanoparticle-Catalyzed Multicomponent Reaction for the Synthesis of 1,4-Diaryl Dihydropyridines. Organic Preparations and Procedures International 49:3, pages 273-286.
Read now
Bahareh Sadeghi, Fereshteh Amiri Tavasoli & Alireza Hassanabadi. (2015) Ag Nanoparticles: An Efficient and Versatile Reagent for Synthesis of Bis(indolyl)methanes. Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry 45:9, pages 1396-1400.
Read now
Yan Zhang, Xiang Chen, Jun Liang & Zhi-cai Shang. (2011) Room-Temperature Synthesis of Diindolylmethanes Using Silica-Supported Sulfuric Acid as a Reusable Catalyst Under Solvent-Free Conditions. Synthetic Communications 41:16, pages 2446-2454.
Read now
SharminV. Nadkarni & JayashreeM. Nagarkar. (2011) Synthesis of highly substituted indoles in presence of solid acid catalysts. Green Chemistry Letters and Reviews 4:2, pages 121-126.
Read now
Khodabakhsh Niknam, Dariush Saberi & Mojtaba Baghernejad. (2010) Preparation of Silica-Bonded S-Sulfonic Acid: A Recyclable Catalyst for the Synthesis of Bis-Indolylmethanes. Phosphorus, Sulfur, and Silicon and the Related Elements 185:4, pages 875-882.
Read now

Articles from other publishers (37)

Kazuho Ban, Shiho Nozaki, Takaaki Aijima, Shuki Oyama, Hirofumi Tsujino, Yusuke Kanematsu, Shuji Akai & Yoshinari Sawama. (2024) Furanyl bis(indolyl)methane as a palladium ion-selective chromogenic agent. Organic & Biomolecular Chemistry 22:14, pages 2734-2738.
Crossref
Periklis X Kolagkis, Eirini M Galathri & Christoforos G Kokotos. (2024) Green and sustainable approaches for the Friedel–Crafts reaction between aldehydes and indoles. Beilstein Journal of Organic Chemistry 20, pages 379-426.
Crossref
Cun-Wei Qian, Xian Li, Wei Xiang & Meng-Qing Gu. (2024) Diazonium salt as a versatile, efficient and mild catalyst for reductive aminations of carbonyls and syntheses of bis(indolyl)methanes. Tetrahedron 151, pages 133789.
Crossref
Zoumpoulia Kechagioglou & Vassilis J. Demopoulos. (2022) 1-Phenyl-3-tosyl-1H-pyrrole. Molbank 2022:4, pages M1471.
Crossref
Rupesh C. Patil, Shashikant A. Damate, Dnyandev N. Zambare & Suresh S. Patil. (2021) Chickpea leaf exudates: a green Brønsted acid type biosurfactant for bis(indole)methane and bis(pyrazolyl)methane synthesis. New Journal of Chemistry 45:20, pages 9152-9162.
Crossref
Estefania Reyes-Mercado, Juan Antonio Rivas-Loaiza, Juan Pablo García-Merinos, Yliana López & J. Betzabe González-Campos. (2021) Chitosan-supported copper salt and copper metal nanoparticles/copper (I) oxide microcrystals: Efficient and recyclable heterogeneous catalysts for the synthesis of bis(indolyl)methanes. Chemical Engineering and Processing - Process Intensification 159, pages 108201.
Crossref
Monika Patil, Shrikrishna Karhale, Chandrakant Bhenki, Arjun Kumbhar & Vasant Helavi. (2020) Sulfonic acid@pericarp-pomegranate: A natural supported catalyst for synthesis of bis(indolyl)alkanes. Reaction Kinetics, Mechanisms and Catalysis 130:2, pages 993-1007.
Crossref
Arvind Singh, Gurpreet Kaur & Bubun Banerjee. (2020) Recent Developments on the Synthesis of Biologically Significant bis/tris(indolyl)methanes under Various Reaction Conditions: A Review. Current Organic Chemistry 24:6, pages 583-621.
Crossref
Arvind Singh, Gurpreet Kaur, Amninder Kaur, Vivek K. Gupta & Bubun Banerjee. (2020) A General Method for the Synthesis of 3,3-bis(indol-3-yl)indolin-2-ones, bis(indol-3-yl)(aryl)methanes and tris(indol-3-yl)methanes Using Naturally Occurring Mandelic Acid as an Efficient Organo-catalyst in Aqueous Ethanol at Room Temperature. Current Green Chemistry 7:1, pages 128-140.
Crossref
G. Lavanya, C.J. Magesh & K. Venkatapathy. (2020) First, in situ generated Mannitol-Boron or Sorbitol-Boron chelate complex as a novel, recyclable catalyst for the highly efficient synthesis of bis(indolyl)methanes, tris(indolyl)methanes and diindolyl (carbazolyl)methanes.. Chemical Data Collections 25, pages 100342.
Crossref
Parul Saini, Pratishtha Kumari, Susanta Hazra & Anil J. Elias. (2019) Oxidative Coupling of Benzylamines with Indoles in Aqueous Medium to Realize Bis‐(Indolyl)Methanes Using a Water‐Soluble Cobalt Catalyst and Air as the Oxidant. Chemistry – An Asian Journal 14:23, pages 4154-4159.
Crossref
Muhammad Faisal, Fayaz Ali Larik, Muhammad Salman & Aamer Saeed. (2019) Phospho Sulfonic Acid: A Highly Efficient and Novel Catalyst for Formation of Bis(Indolyl)Alkanes from Aldehydes and Indole under Aqueous Conditions. Kinetics and Catalysis 60:4, pages 522-535.
Crossref
Gurpreet Kaur, Shivani Thakur, Priyanka Kaundal, Kusum Chandel & Bubun Banerjee. (2018) p ‐Dodecylbenzenesulfonic Acid: An Efficient Brønsted Acid‐Surfactant‐Combined Catalyst to Carry out Diverse Organic Transformations in Aqueous Medium . ChemistrySelect 3:45, pages 12918-12936.
Crossref
Bruna Luisa Tornquist, Gabriel de Paula Bueno, Julia Caroline Manzano Willig, Isadora M. de Oliveira, Helio A. Stefani, Jamal Rafique, Sumbal Saba, Bernardo Almeida Iglesias, Giancarlo V. Botteselle & Flávia Manarin.. (2018) Ytterbium (III) triflate/Sodium Dodecyl Sulfate: A Versatile Recyclable and Water‐Tolerant Catalyst for the Synthesis of Bis(indolyl)methanes (BIMs). ChemistrySelect 3:23, pages 6358-6363.
Crossref
Graziella Tocco, Gloria Zedda, Mariano Casu, Gabriella Simbula & Michela Begala. (2017) Solvent-Free Addition of Indole to Aldehydes: Unexpected Synthesis of Novel 1-[1-(1H-Indol-3-yl) Alkyl]-1H-Indoles and Preliminary Evaluation of Their Cytotoxicity in Hepatocarcinoma Cells. Molecules 22:10, pages 1747.
Crossref
MARZIEH ESMAIELPOUR, BATOOL AKHLAGHINIA & ROYA JAHANSHAHI. (2017) Green and efficient synthesis of aryl/alkylbis(indolyl)methanes using Expanded Perlite-PPA as a heterogeneous solid acid catalyst in aqueous media. Journal of Chemical Sciences 129:3, pages 313-328.
Crossref
Karthikeyan Kandasamy, Sivaprasad Ganesabaskaran, Muthusamy Poomalai Pachamuthu, Rajamanickam Maheswari & Anand Ramanathan. (2015) Synthesis of pyrazolylbisindoles over mesoporous Lewis acidic ZrTUD-1: Potential application in selective Cu2+ colorimetric detection. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 150, pages 34-39.
Crossref
Mona Hosseini‐Sarvari & Zahra Razmi. (2015) Palladium Supported on Zinc Oxide Nanoparticles as Efficient Heterogeneous Catalyst for SuzukiMiyaura and Hiyama Reactions under Normal Laboratory Conditions . Helvetica Chimica Acta 98:6, pages 805-818.
Crossref
Arijit Kundu, Aniruddha Ganguly, Kaliprasanna Dhara, Prasanta Patra & Nikhil Guchhait. (2015) An efficient solvent-free synthesis of bis(indolyl)methane-based naked eye chemosensor for Cu 2+ ion from β-chloro-α,β-unsaturated aldehydes using PMA-Cellulose as a solid phase reusable catalyst . RSC Advances 5:66, pages 53220-53229.
Crossref
Mona Hosseini-Sarvari, Zahra Razmi & Mohammad Mehdi Doroodmand. (2014) Palladium supported on zinc oxide nanoparticles: Synthesis, characterization, and application as heterogeneous catalyst for Mizoroki–Heck and Sonogashira reactions under ligand-free and air atmosphere conditions. Applied Catalysis A: General 475, pages 477-486.
Crossref
Nongthombam G. Singh, Chingrishon Kathing, Jims W. S. Rani & Rishan L. Nongkhlaw. (2014) Synthesis of Pharmacologically Active Bis(indolyl) and Tris(indolyl) Derivatives Using Chlorotrimethylsilane. Journal of the Chinese Chemical Society 61:4, pages 442-446.
Crossref
Xia-Fei Xu, Yan Xiong, Xue-Ge Ling, Xi-Mi Xie, Jie Yuan, Shu-Ting Zhang & Zhong-Rong Song. (2014) A practical synthesis of bis(indolyl)methanes catalyzed by BF3·Et2O. Chinese Chemical Letters 25:3, pages 406-410.
Crossref
Andrea Renzetti, Emanuela Boffa, Marco Colazzo, Stéphane Gérard, Janos Sapi, Tak-Hang Chan, Hiroshi Nakazawa, Claudio Villani & Antonella Fontana. (2014) Yonemitsu-type condensations catalysed by proline and Eu(OTf) 3 . RSC Adv. 4:89, pages 47992-47999.
Crossref
Graziella Tocco, Michela Begala, Francesca Esposito, Pierluigi Caboni, Valeria Cannas & Enzo Tramontano. (2013) ZnO-mediated regioselective C-arylsulfonylation of indoles: a facile solvent-free synthesis of 2- and 3-sulfonylindoles and preliminary evaluation of their activity against drug-resistant mutant HIV-1 reverse transcriptases (RTs). Tetrahedron Letters 54:46, pages 6237-6241.
Crossref
Ganesh M. Shelke, V. Kameshwara Rao, Rakesh K. Tiwari, Bhupender S. Chhikara, Keykavous Parang & Anil Kumar. (2013) Bismuth triflate-catalyzed condensation of indoles with acetone. RSC Advances 3:44, pages 22346.
Crossref
Gaurav Gupta, Ganesh Chaudhari, Preeti Tomar, Yogesh Gaikwad, Rameez Azad, Girish Pandya, Govinda Waghulde & Kesharsingh Patil. (2012) Synthesis of bis(indolyl)methanes using molten N-butylpyridinium bromide. European Journal of Chemistry 3:4, pages 475-479.
Crossref
Samuel R. Mendes, Samuel Thurow, Margiani P. Fortes, Filipe Penteado, Eder J. Lenardão, Diego Alves, Gelson Perin & Raquel G. Jacob. (2012) Synthesis of bis(indolyl)methanes using silica gel as an efficient and recyclable surface. Tetrahedron Letters 53:40, pages 5402-5406.
Crossref
Pranab J. Das & Jupitara Das. (2012) Synthesis of aryl/alkyl(2,2′-bis-3-methylindolyl)methanes and aryl(3,3′-bis indolyl)methanes promoted by secondary amine based ionic liquids and microwave irradiation. Tetrahedron Letters 53:35, pages 4718-4720.
Crossref
Mona Hosseini-Sarvari. (2012) Synthesis of camphorquinoxaline and quinoxaline derivatives over metal oxides as catalyst. Journal of the Iranian Chemical Society 9:4, pages 535-543.
Crossref
Ajam C. Shaikh & Chinpiao Chen. (2011) An Easy and Efficient Synthesis of Bisindolylmethanes and Tetraindolylmethane Tröger's Base Catatlyzed by AgBF 4 . Journal of the Chinese Chemical Society 58:7, pages 899-905.
Crossref
Morteza Shiri, Mohammad Ali Zolfigol, Hendrik Gerhardus Kruger & Zahra Tanbakouchian. (2009) Bis- and Trisindolylmethanes (BIMs and TIMs). Chemical Reviews 110:4, pages 2250-2293.
Crossref
Richard J. Sundberg. 2010. Heterocyclic Scaffolds II:. Heterocyclic Scaffolds II: 47 115 .
Mostafa Kiamehr & Firouz Matloubi Moghaddam. (2009) An efficient ZnO-catalyzed synthesis of novel indole-annulated thiopyrano-chromene derivatives via Domino Knoevenagel-hetero-Diels–Alder reaction. Tetrahedron Letters 50:48, pages 6723-6727.
Crossref
Claudio C. Silveira, Samuel R. Mendes, Francieli M. Líbero, Eder J. Lenardão & Gelson Perin. (2009) Glycerin and CeCl3·7H2O: a new and efficient recyclable medium for the synthesis of bis(indolyl)methanes. Tetrahedron Letters 50:44, pages 6060-6063.
Crossref
Mona Hosseini-Sarvari. (2009) Commercial ZrO 2 as a new, efficient, and reusable catalyst for the one-step synthesis of quinolines in solvent-free conditions . Canadian Journal of Chemistry 87:8, pages 1122-1126.
Crossref
Kazuhiro Kobayashi, Yuu Shirai & Hisatoshi Konishi. (2009) Synthesis of Bis(indolyl)methane Derivatives by Acid-Catalyzed Reactions of Indoles with Vinyl Ethers. HETEROCYCLES 78:8, pages 2033.
Crossref
Mona Hosseini‐Sarvari. (2008) ChemInform Abstract: Synthesis of Bis(indolyl)methanes Using a Catalytic Amount of ZnO under Solvent‐Free Conditions.. ChemInform 39:32.
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.