Publication Cover
Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 35, 2005 - Issue 22
417
Views
51
CrossRef citations to date
0
Altmetric
Original Articles

Montmorillonite K10 Clay: An Effective Solid Catalyst for One‐Pot Synthesis of Polyhydroquinoline Derivatives

, , , &
Pages 2875-2880 | Received 28 Apr 2005, Published online: 22 Aug 2006

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

Read on this site (9)

Baliram S. Hote, Tabassum A. J. Siddiqui & Parshuram M. Pisal. (2022) Green Approach for Four Component One Pot Synthesis of Polyhydroquinoline Catalyzed by Praseodymium Oxide Using Visible Light. Polycyclic Aromatic Compounds 42:8, pages 5708-5718.
Read now
Manmeet Kaur, Anu Priya, Aditi Sharma, Arvind Singh & Bubun Banerjee. (2022) Glycine and its derivatives catalyzed one-pot multicomponent synthesis of bioactive heterocycles. Synthetic Communications 52:16, pages 1635-1656.
Read now
Abolghasem Davoodnia & Ahmad Nakhaei. (2016) Fast and Solvent-Free Synthesis of Polyhydroquinolines Catalyzed by a Keplerate Type Giant Nanoporous Isopolyoxomolybdate as a Reusable Catalyst. Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry 46:7, pages 1073-1080.
Read now
Sudarshan Das, Sougata Santra, Anupam Roy, Sharmistha Urinda, Adinath Majee & Alakananda Hajra. (2012) One-pot multicomponent synthesis of polyhydroquinolines under catalyst and solvent-free conditions. Green Chemistry Letters and Reviews 5:1, pages 97-100.
Read now
MajidM. Heravi, Masoumeh Zakeri, Samira Pooremamy & HossienA. Oskooie. (2010) Clean and Efficient Synthesis of Polyhydroquinoline Derivatives Under Solvent-Free Conditions Catalyzed by Morpholine. Synthetic Communications 41:1, pages 113-120.
Read now
SantoshS. Katkar, PravinkumarH. Mohite, LakshmanS. Gadekar, BalasahebR. Arbad & MachhindraK. Lande. (2010) ZnO-beta zeolite: as an effective and reusable heterogeneous catalyst for the one-pot synthesis of polyhydroquinolines. Green Chemistry Letters and Reviews 3:4, pages 287-292.
Read now
Sujaya Dasgupta & Béla Török. (2008) APPLICATION OF CLAY CATALYSTS IN ORGANIC SYNTHESIS. A REVIEW. Organic Preparations and Procedures International 40:1, pages 1-65.
Read now
Adeleh Moshtaghi Zonouz & Sahar Baradaran Hosseini. (2008) Montmorillonite K10 Clay: An Efficient Catalyst for Hantzsch Synthesis of 1,4‐Dihydropyridine Derivatives. Synthetic Communications 38:2, pages 290-296.
Read now

Articles from other publishers (42)

Aslıhan Ayvaz, Sinem Gorkem Demirbaş, Ahmet Demirbaş & Neslihan Demirbaş. (2023) One-Pot Multicomponent Reactions in Deep Eutectic Solvents. Current Organic Chemistry 27:7, pages 585-620.
Crossref
D. Khan, Shaily & N. Maurya. (2023) Microwave-Assisted IBX-Mediated One-Pot Four-Component Synthesis of 4-Arylhexahydroquinoline Derivatives from Benzyl Alcohols: A Metal-Free Approach. Russian Journal of Organic Chemistry 59:4, pages 695-703.
Crossref
Priyanka Patil, Suresh Kadam, Dayanand Patil & Paresh More. (2022) A green approach for the multicomponent synthesis of polyhydroquinolines and 6-unsubstituted dihydropyrimidinones using novel highly proficient acidic ionic liquid [CEMIM][MSA] as a reusable catalyst. Catalysis Communications 170, pages 106500.
Crossref
Prerna Ganwir, Priyanka Bandivadekar, Pawan Kudale & Ganesh U. Chaturbhuj. (2022) Catalyst-free, one-pot expeditious synthesis of polyhydroquinolines and 2-amino-4H-chromenes. Research on Chemical Intermediates 48:8, pages 3429-3447.
Crossref
Mahmoud Abd El Aleem Ali Ali El‐Remaily, Hesham A. Hamad, Ahmed M. M. Soliman & Omar M. Elhady. (2021) Boosting the catalytic performance of manganese (III)‐porphyrin complex MnTSPP for facile one‐pot green synthesis of 1,4‐dihydropyridine derivatives under mild conditions. Applied Organometallic Chemistry 35:7.
Crossref
Mehraneh Aghaei-Hashjin, Asieh Yahyazadeh & Esmayeel Abbaspour-Gilandeh. (2021) Mo@GAA-Fe 3 O 4 MNPs: a highly efficient and environmentally friendly heterogeneous magnetic nanocatalyst for the synthesis of polyhydroquinoline derivatives . RSC Advances 11:18, pages 10497-10511.
Crossref
Vanesa Calvino-Casilda & Rosa María Martín-Aranda. (2020) Ordered mesoporous molecular sieves as active catalyts for the synthesis of 1,4-dihydropyridine derivatives. Catalysis Today 354, pages 44-50.
Crossref
Hamideh Aghahosseini, Mohammad Reza Ranjbar & Ali Ramazani. (2020) Simple and Efficient Synthesis of Guanidine‐Based Magnetic Nanocatalyst for the One‐Pot, Four‐Component Synthesis of Polyhydroquinolines in Water. ChemistrySelect 5:28, pages 8415-8420.
Crossref
Bubun Banerjee & Gurpreet Kaur. (2020) Microwave Assisted Catalyst-free Synthesis of Bioactive Heterocycles. Current Microwave Chemistry 7:1, pages 5-22.
Crossref
Prasun Choudhury, Pranab Ghosh & Basudeb Basu. (2019) Amine-functionalized graphene oxide nanosheets (AFGONs): an efficient bifunctional catalyst for selective formation of 1,4-dihydropyridines, acridinediones and polyhydroquinolines. Molecular Diversity 24:1, pages 283-294.
Crossref
Shahla Vaysipour, Zahra Rafiee & Masoud Nasr-Esfahani. (2020) Synthesis and characterization of copper (II)-poly(acrylic acid)/M-MCM-41 nanocomposite as a novel mesoporous solid acid catalyst for the one-pot synthesis of polyhydroquinoline derivatives. Polyhedron 176, pages 114294.
Crossref
Adya Jain & Bimal Krishna Banik. 2020. Green Approaches in Medicinal Chemistry for Sustainable Drug Design. Green Approaches in Medicinal Chemistry for Sustainable Drug Design 95 142 .
Behzad Zeynizadeh, Soleiman Rahmani & Elham Eghbali. (2019) Anchored sulfonic acid on silica-layered NiFe2O4: A magnetically reusable nanocatalyst for Hantzsch synthesis of 1,4-dihydropyridines. Polyhedron 168, pages 57-66.
Crossref
Behzad Zeynizadeh, Soleiman Rahmani & Siamand Ilkhanizadeh. (2019) Strongly proton exchanged montmorillonite K10 (H+-Mont) as a solid acid catalyst for highly efficient and environmental benign synthesis of biscoumarins via tandem Knoevenagel–Michael reaction. Polyhedron 168, pages 48-56.
Crossref
Sara Ranjbar, Najmeh Edraki, Omidreza Firuzi, Mehdi Khoshneviszadeh & Ramin Miri. (2018) 5-Oxo-hexahydroquinoline: an attractive scaffold with diverse biological activities. Molecular Diversity 23:2, pages 471-508.
Crossref
Pierrick Dufrénoy, Alina Ghinet, Marie Hechelski, Adam Daïch & Christophe Waterlot. (2018) An innovative and efficient method to synthesize meloxicam in one-step procedure with respect to the green chemistry. Journal of the Iranian Chemical Society 16:3, pages 501-509.
Crossref
Dawood Elhamifar, Omolbanin Yari & Shaaker Hajati. (2018) Surfactant-directed one-pot preparation of novel Ti-containing mesomaterial with improved catalytic activity and reusability. Applied Organometallic Chemistry 32:10, pages e4471.
Crossref
Somayeh Hashemi-Uderji, Mohammad Abdollahi-AlibeikReza Ranjbar-Karimi. (2018) FSM-16-SO 3 H nanoparticles as a novel heterogeneous catalyst: preparation, characterization, and catalytic application in the synthesis of polyhydroquinolines . Main Group Metal Chemistry 41:3-4, pages 91-101.
Crossref
Marie Hechelski, Alina Ghinet, Brice Louvel, Pierrick Dufrénoy, Benoît Rigo, Adam Daïch & Christophe Waterlot. (2018) From Conventional Lewis Acids to Heterogeneous Montmorillonite K10: Eco-Friendly Plant-Based Catalysts Used as Green Lewis Acids. ChemSusChem 11:8, pages 1249-1277.
Crossref
Dawood Elhamifar, Parvin Badin & Gholamreza Karimipoor. (2017) Alkyl-imidazolium based organosilica supported Fe/porphyrin complex: As novel, highly efficient and reusable catalyst for the unsymmetrical Hantzsch reaction. Journal of Colloid and Interface Science 499, pages 120-127.
Crossref
Adeleh Moshtaghi Zonouz, Somaieh Okhravi & Davood Moghani. (2016) Ammonium acetate as a catalyst and/or reactant in the reaction of dimedone, aromatic aldehyde, and malononitrile: synthesis of tetrahydrobenzo[b]pyrans and hexahydroquinolines. Monatshefte für Chemie - Chemical Monthly 147:10, pages 1819-1824.
Crossref
S. Sheik Mansoor, K. Aswin, K. Logaiya & S.P.N. Sudhan. (2016) Bismuth nitrate as an efficient recyclable catalyst for the one-pot multi component synthesis of 1,4-dihydropyridine derivatives through unsymmetrical Hantzsch reaction. Journal of Saudi Chemical Society 20, pages S100-S108.
Crossref
Gudala Satish, Archi Sharma, Kranthi Kumar Gadidasu, Rajeswar Rao Vedula & Santhosh Penta. (2016) Synthesis of 4-aryl-2-pyranyl-7,8-dihydroquinolin-5(6H)-ones catalyzed by cerium ammonium nitrate via Hantzsch multicomponent reaction and their antibacterial activity. Chemistry of Heterocyclic Compounds 52:6, pages 409-414.
Crossref
Hamideh Ahankar, Ali Ramazani & Sang Woo Joo. (2015) Magnetic nickel ferrite nanoparticles as an efficient catalyst for the preparation of polyhydroquinoline derivatives under microwave irradiation in solvent-free conditions. Research on Chemical Intermediates 42:3, pages 2487-2500.
Crossref
Masoumeh Abedini, Farhad Shirini & Maryam Mousapour. (2015) Poly(vinylpyrrolidinium) perchlorate as a new and efficient catalyst for the promotion of the synthesis of polyhydroquinoline derivatives via Hantzsch condensation. Research on Chemical Intermediates 42:3, pages 2303-2315.
Crossref
Anirban Sarkar, Sougata Santra, Shrishnu Kumar Kundu, Alakananda Hajra, Grigory V. Zyryanov, Oleg N. Chupakhin, Valery N. Charushin & Adinath Majee. (2016) A decade update on solvent and catalyst-free neat organic reactions: a step forward towards sustainability. Green Chemistry 18:16, pages 4475-4525.
Crossref
Sravanthi Devi Guggilapu, Santosh Kumar Prajapti, Atulya Nagarsenkar, Guntuku Lalita, Ganga Modi Naidu Vegi & Bathini Nagendra Babu. (2016) MoO 2 Cl 2 catalyzed efficient synthesis of functionalized 3,4-dihydropyrimidin-2(1H)-ones/thiones and polyhydroquinolines: recyclability, fluorescence and biological studies . New Journal of Chemistry 40:1, pages 838-843.
Crossref
Bai Lin Li, Ai Guo Zhong & An Guo Ying. (2015) Novel SO 3 H-Functionalized Ionic Liquids - Catalyzed Facile and Efficient Synthesis of Polyhydroquinoline Derivatives via Hantzsch Condensation under Ultrasound Irradiation . Journal of Heterocyclic Chemistry 52:2, pages 445-449.
Crossref
Masoud Nasr-Esfahani, S. Jafar Hoseini, Morteza Montazerozohori, Rasool Mehrabi & Hasan Nasrabadi. (2014) Magnetic Fe3O4 nanoparticles: Efficient and recoverable nanocatalyst for the synthesis of polyhydroquinolines and Hantzsch 1,4-dihydropyridines under solvent-free conditions. Journal of Molecular Catalysis A: Chemical 382, pages 99-105.
Crossref
Rajesh Kumar, Nitin H. Andhare, Amit Shard, Richa Richa & Arun Kumar Sinha. (2014) Multicomponent diversity-oriented synthesis of symmetrical and unsymmetrical 1,4-dihydropyridines in recyclable glycine nitrate (GlyNO 3 ) ionic liquid: a mechanistic insight using Q-TOF, ESI-MS/MS . RSC Adv. 4:37, pages 19111-19121.
Crossref
M. Saha, T. S. Luireingam, T. Merry & A. K. Pal. (2013) Catalyst-free, Knoevenagel-Michael Addition Reaction of Dimedone under Microwave Irradiation: An Efficient One-pot Synthesis of Polyhydroquinoline Derivatives. Journal of Heterocyclic Chemistry 50:4, pages 941-944.
Crossref
Abolghasem DAVOODNIA, Maryam KHASHI & Niloofar TAVAKOLI-HOSEINI. (2013) Tetrabutylammonium hexatungstate [TBA]2[W6O19]: Novel and reusable heterogeneous catalyst for rapid solvent-free synthesis of polyhydroquinoline via unsymmetrical Hantzsch reaction. Chinese Journal of Catalysis 34:6, pages 1173-1178.
Crossref
Rajendra Surasani, Dipak Kalita, A.V. Dhanunjaya Rao, Kaviraj Yarbagi & K.B. Chandrasekhar. (2012) FeF3 as a novel catalyst for the synthesis of polyhydroquinoline derivatives via unsymmetrical Hantzsch reaction. Journal of Fluorine Chemistry 135, pages 91-96.
Crossref
Lakshi Saikia, Dipanka Dutta & Dipak Kumar Dutta. (2012) Efficient clay supported Ni0 nanoparticles as heterogeneous catalyst for solvent-free synthesis of Hantzsch polyhydroquinoline. Catalysis Communications 19, pages 1-4.
Crossref
Wassima Ghalem, Raouf Boulcina & Abdelmadjid Debache. (2012) Synthesis of Some New 1,4‐Dihydropyridine Derivatives through a Facile One‐pot Hantzsch Condensation Catalyzed by Triethylamine. Chinese Journal of Chemistry 30:3, pages 733-737.
Crossref
Maria José Climent, Avelino Corma & Sara Iborra. (2012) Homogeneous and heterogeneous catalysts for multicomponent reactions. RSC Adv. 2:1, pages 16-58.
Crossref
Mithu Saha & Amarta Kumar Pal. (2011) Palladium(0) nanoparticles: an efficient catalyst for the one-pot synthesis of polyhydroquinolines. Tetrahedron Letters 52:38, pages 4872-4877.
Crossref
K.A. Undale, T.S. Shaikh, D.S. Gaikwad & D.M. Pore. (2011) One-pot multi-component synthesis of polyhydroquinolines at ambient temperature. Comptes Rendus Chimie 14:5, pages 511-515.
Crossref
Satish Kumar Singh & Krishna Nand Singh. (2010) Glycine‐catalyzed easy and efficient one‐pot synthesis of polyhydroquinolines through Hantzsch multicomponent condensation under controlled microwave. Journal of Heterocyclic Chemistry 47:1, pages 194-198.
Crossref
Suryakant B. Sapkal, Kiran F. Shelke, Bapurao B. Shingate & Murlidhar S. Shingare. (2009) Nickel nanoparticle-catalyzed facile and efficient one-pot synthesis of polyhydroquinoline derivatives via Hantzsch condensation under solvent-free conditions. Tetrahedron Letters 50:15, pages 1754-1756.
Crossref
El Sayed H. El Ashry, Laila F. Awad, Yeldez El Kilany & Elsayed I. Ibrahim. 2009. Advances in Heterocyclic Chemistry Volume 98. Advances in Heterocyclic Chemistry Volume 98 1 141 .
Guoyong Song, Bo Wang, Xiaoyin Wu, Yuru Kang & Liming Yang. (2006) Montmorillonite K10 Clay: An Effective Solid Catalyst for One‐Pot Synthesis of Polyhydroquinoline Derivatives.. ChemInform 37:15.
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.