11,389
Views
49
CrossRef citations to date
0
Altmetric
Editorial

A Review on the Recent Multicomponent Synthesis of Pyranopyrazoles

&
Pages 223-291 | Received 08 Nov 2018, Accepted 14 Feb 2019, Published online: 11 May 2019

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

Read on this site (11)

Navid Ghorbani Dehshal, Manouchehr Mamaghani, Parivash Jahanshahi & Iman Rezaei. (2023) A Green Synthesis of Novel Derivatives of Thiazole-5-One Using Magnetic Supported Copper Nanocatalyst (γ-Fe2O3@HAp@CPTMS@AT@Cu(ӀI)). Polycyclic Aromatic Compounds 43:9, pages 8201-8216.
Read now
Seyedeh F. Hojati, Amirhassan Amiri, Sara Mohamadi & Sara Soleimanian. (2023) MOF-199 as an Efficient Metal Organic Framework Catalyst for the Synthesis of Spiro[Indoline-3,4′-Pyrano[2,3-c]Pyrazole] Derivatives. Polycyclic Aromatic Compounds 43:9, pages 8134-8146.
Read now
Fatemeh Alavi, Manouchehr Mamaghani & Mehdi Sheykhan. (2023) Synthesis and Application of Novel Magnetic Supported Copper Nanocatalyst for the Preparation of Thiazoles. Polycyclic Aromatic Compounds 0:0, pages 1-24.
Read now
Ankita Thakral, Monika Verma, Ajay Thakur, Ruchi Bharti & Renu Sharma. (2023) Comprehensive Review on One-pot Green Synthesis of Pyran and Chromene Fused Benzo[α]phenazines. Polycyclic Aromatic Compounds 0:0, pages 1-25.
Read now
Ashishkumar P Katariya, Maya V. Katariya, Jaiprakash Sangshetti & Satish U Deshmukh. (2023) Ionic Liquid [(EMIM)Ac] Catalyzed Green and Efficient Synthesis of Pyrano[2,3-c]Pyrazole Derivatives. Polycyclic Aromatic Compounds 43:4, pages 3761-3775.
Read now
Maan T. Khayat, Hany E. A. Ahmed, Abdelsattar M. Omar, Yosra A. Muhammad, Khadijah A. Mohammad, Azizah M. Malebari, Ahdab N. Khayyat, Ahmed H. Halawa, Hamada S. Abulkhair, Ahmed A. Al-Karmalawy, Mohammed Almaghrabi, Majed Alharbi, Anfal S. Aljahdali & Ahmed M. El-Agrody. (2023) A novel class of phenylpyrazolone-sulphonamides rigid synthetic anticancer molecules selectively inhibit the isoform IX of carbonic anhydrases guided by molecular docking and orbital analyses. Journal of Biomolecular Structure and Dynamics 0:0, pages 1-19.
Read now
Rogheyeh Hossein Nia, Zahra Taati & Manouchehr Mamaghani. (2023) Multi-Component Synthesis of Indole-Substituted Heterocycles– A Review. Polycyclic Aromatic Compounds 0:0, pages 1-36.
Read now
Bahareh Babaei, Manouchehr Mamaghani & Masoud Mokhtary. (2023) Clean Synthesis of Propargylamines Using Novel Magnetically Recyclable Silver Nanocatalyst (AgMNPs). Polycyclic Aromatic Compounds 43:1, pages 396-408.
Read now
Manouchehr Mamaghani, Shaghayegh Ansar & Parivash Jahanshahi. (2022) A Convergent One-Pot Synthesis of Novel Pyrrole-Pyridopyrimidines Hybrids Using 1-Carboxymethyl-2,3-Dimethylimidazolium Iodide {[cmdmim]I} as a Recyclable Catalyst. Polycyclic Aromatic Compounds 42:8, pages 5217-5230.
Read now
Chetan K. Jadhav, Amol S. Nipate, Asha V. Chate & Charansingh. H. Gill. (2022) β‐Cyclodextrin: An Efficient Supramolecular Catalyst for the Synthesis of Pyranoquinolines Derivatives under Ultrasonic Irradiation in Water. Polycyclic Aromatic Compounds 42:7, pages 4224-4239.
Read now
Farzaneh Mohamadpour. (2020) Caffeine as a Naturally Green and Biodegradable Catalyst for Preparation of Dihydropyrano[2,3-c]pyrazoles. Organic Preparations and Procedures International 52:5, pages 453-457.
Read now

Articles from other publishers (38)

Mayur G. Patil, Ganesh A. Thakur, Rupashri K. Kadu & Pramod B. Thakur. (2023) Unprecedented, catalyst‐free, and rapid one‐pot , three‐component green synthesis of substituted 3‐hydroxy‐2‐oxindoles in water . Journal of Heterocyclic Chemistry 60:12, pages 2063-2071.
Crossref
Mangla Mishra, Praveen P. Singh, Pankaj Nainwal, Shraddha Tivari & Vishal Srivastava. (2023) Visible-light induced acridinium catalysed synthesis of biologically active dihydropyranopyrazoles scaffolds via HAT. Tetrahedron Letters 129, pages 154749.
Crossref
Bandameeda Ramesh Naidu, Thondooru Sruthi, Raghavender Mitty & Katta Venkateswarlu. (2023) Catalyst-free mechanochemistry as a versatile tool in synthetic chemistry: a review. Green Chemistry 25:16, pages 6120-6148.
Crossref
Ali A. Zwain, Irfan Ahmad, Rasha Khalaf Jebur Ali, Mustafa Kahtan, Atheer Khdyair Hamad, Enas Abdulgader Hassan, Mohammed Asiri, Benien M. Ridha & Ali Alsalamy. (2023) Synthesis, antioxidant, and antimicrobial evaluation of novel 2,3-dihydro-1H-pyrazole-4-carbonitrile derivatives using K2CO3/glycerol as a green deep eutectic solvent. Frontiers in Materials 10.
Crossref
Aaftaab Sethi & Mallika Alvala. (2023) β-CD/Lewis Acid Dual Catalytic System for Efficient Synthesis of Pyranopyrazoles in Aqueous Environment. Letters in Organic Chemistry 20:7, pages 585-595.
Crossref
Shabnam Rashidi, Fatemeh Gholamian & Maryam Hajjami. (2023) Immobilization of Ni(II)-4-phenylthiosemicarbazide into functionalized MCM-41 as nano catalyst in synthesis of tetrahydrobenzo[b]pyran and 1,4-dihydropyrano[2,3-c]pyrazole. Journal of Nanoparticle Research 25:5.
Crossref
Sh. Patel, S. Patel, H. Vaghani & J. Kumbhani. (2023) Ultrasound-Promoted Optimized Green Synthesis of 1,4-Dihydropyrano[2,3-c]pyrazole Derivatives and Their Antimicrobial Activity. Russian Journal of Organic Chemistry 59:4, pages 712-718.
Crossref
Dina Mallah & Bi Bi Fatemeh Mirjalili. (2023) A green protocol ball milling synthesis of dihydropyrano[2,3-c]pyrazole using nano-silica/aminoethylpiperazine as a metal-free catalyst. BMC Chemistry 17:1.
Crossref
Mohamed G. Abouelenein, Abd El-Hamid  A. Ismail, Asmaa Aboelnaga, Mohamed  A. Tantawy, Nora  M.  A. El-Ebiary & Samy  A. El-Assaly. (2023) Synthesis, DFT calculations, In silico studies, and biological evaluation of pyrano[2,3-c]pyrazole and pyrazolo[4′,3′:5,6]pyrano[2,3‐d]pyrimidine derivatives. Journal of Molecular Structure 1275, pages 134587.
Crossref
Sagar Tanpure, Abhijeet Mulik, Mohan Rajmane & Shamrao Lawande. (2022) Novel ionic liquid dihydrogen 4,4′-trimethylenedipiperidine phosphate-catalyzed greener and efficient synthesis of dihydro pyrano [2,3-c] pyrazole. Research on Chemical Intermediates 49:3, pages 819-835.
Crossref
Sourav Chakraborty, Bhaswati Paul, Utpal Chandra De, Ramalingam Natarajan & Swapan Majumdar. (2023) Water–SDS–[BMIm]Br composite system for one-pot multicomponent synthesis of pyrano[2,3- c ]pyrazole derivatives and their structural assessment by NMR, X-ray, and DFT studies . RSC Advances 13:10, pages 6747-6759.
Crossref
K. Singh, D. S. Malhi, B. Singh & H. S. Sohal. (2023) Synthesis and Antimicrobial Evaluation of Some Novel 2-[4-Substituted 5-(ethoxycarbonyl)-3-methyl-1,4-dihydropyrano[2,3-c]pyrazol-6-yl]acetic Acid Derivatives. Russian Journal of Organic Chemistry 59:1, pages 108-116.
Crossref
Azizah M. Malebari, Hany E. A. Ahmed, Saleh K. Ihmaid, Abdelsattar M. Omar, Yosra A. Muhammad, Sultan S. Althagfan, Naif Aljuhani, Abdel-Aziz A. A. El-Sayed, Ahmed H. Halawa, Heba M. El-Tahir, Safaa A. Turkistani, Mohammed Almaghrabi, Ahmed K. B. Aljohani, Ahmed M. El-Agrody & Hamada S. Abulkhair. (2023) Exploring the dual effect of novel 1,4-diarylpyranopyrazoles as antiviral and anti-inflammatory for the management of SARS-CoV-2 and associated inflammatory symptoms. Bioorganic Chemistry 130, pages 106255.
Crossref
Debjit Das & Sasadhar Majhi. 2023. Nanoparticles in Green Organic Synthesis. Nanoparticles in Green Organic Synthesis 75 102 .
V. V. Dotsenko, K. V. Khalatyan, A. A. Russkikh, E. A. Varzieva, D. A. Kramareva, V. K. Vasilin, N. A. Aksenov & I. V. Aksenova. (2023) Synthesis and Some Properties of 2-Amino-4-aryl-6-hexyl-7-hydroxy-4H-chromene-3-carbonitriles. Russian Journal of General Chemistry 92:12, pages 2850-2860.
Crossref
Shehryar Hameed, Oluwatoyin Babatunde, Uzma Salar, Abdul Jabbar, Sridevi Chigurupati, Mehwish Solangi, Lubna Atta, Zaheer Ul-Haq, Faiza Saleem, Saurabh Bhatia, Ahmed Al-Harrasi, Muhammad Taha & Khalid Mohammed Khan. (2022) Efficient one-pot synthesis of arylated pyrazole-fused pyran analogs: as leads to treating diabetes and Alzheimer's disease. Future Medicinal Chemistry 14:21, pages 1507-1526.
Crossref
A. S. Patki, D. B. Muley, R. P. Kagne & S. R. Mathapati. (2022) One-Pot Room-Temperature Protocol for the Synthesis of Pyrazolines Using SnO2 Nanocomposite as Heterogeneous Catalyst. Russian Journal of Organic Chemistry 58:10, pages 1455-1465.
Crossref
Mahdi Omidi & Akbar Mobinikhaledi. (2022) Sulfonic acid pyridinium chloride-functionalized nanoparticles (MnCoFe2O4@Niacin-SO3H)+Cl− as a novel and reusable catalyst for synthesis of tetrahydrodipyrazolopyridines and pyranopyrazoles. Research on Chemical Intermediates 48:10, pages 4347-4371.
Crossref
Suresh Maddila, Nagaraju Kerru & Sreekantha Babu Jonnalagadda. (2022) Recent Progress in the Multicomponent Synthesis of Pyran Derivatives by Sustainable Catalysts under Green Conditions. Molecules 27:19, pages 6347.
Crossref
Dharmendra Dharmendra, Priyanka Chundawat, Yogeshwari Vyas, Purnima Chaubisa, Monika Kumawat & Chetna Ameta. (2022) Eco-friendly design of TiO2 nanoparticles supported on Fe3O4 coated carbon-based biochar substrate for the synthesis of pyrano-[2, 3-c]-pyrazole derivatives. Sustainable Chemistry and Pharmacy 28, pages 100732.
Crossref
Mohammad taghi Bagherian Jamnani, Rahimeh Hajinasiri, Hossein Ghafuri & Zinatossadat Hossaini. (2022) Synthesis and characterization of graphitic carbon nitride supported Tris(hydroxymethyl)aminomethanes) g-C3N4/THAM) as a novel catalyst for the synthesis of poly hydroquinoline and pyranopyrazole derivatives. Polyhedron 221, pages 115878.
Crossref
Roghayeh Hossein Nia, Manouchehr Mamaghani & Fatemeh Tavakoli. (2022) Ag-catalyzed Multicomponent Synthesis of Heterocyclic Compounds: A Review. Current Organic Synthesis 19:4, pages 484-506.
Crossref
Mehri Solgi, Ardeshir Khazaei & Tahereh Akbarpour. (2022) Synthesis of magnetic nanoparticles Fe3O4@CQD@Si(OEt)(CH2)3@melamine@TC@Ni(NO3) with application in the synthesis of 2-amino-3-cyanopyridine and pyrano[2,3-c]pyrazole derivatives. Research on Chemical Intermediates 48:6, pages 2443-2468.
Crossref
Pratibha Verma, Swati Chauhan, Vishal Singh, Sundaram Singh & Vandana Srivastava. (2021) Urea hydrogen peroxide-initiated synthesis of pyranopyrazoles through oxidative coupling under base- and metal-free conditions by physical grinding method. Molecular Diversity 26:3, pages 1769-1777.
Crossref
Mostafa Koolivand, Mohsen Nikoorazm, Arash Ghorbani‐Choghamarani & Masoud Mohammadi. (2022) A novel cubic Zn‐citric acid‐based MOF as a highly efficient and reusable catalyst for the synthesis of pyranopyrazoles and 5‐substituted 1H‐tetrazoles. Applied Organometallic Chemistry 36:6.
Crossref
Biplob Borah & L. Raju Chowhan. (2022) Ultrasound-assisted transition-metal-free catalysis: a sustainable route towards the synthesis of bioactive heterocycles. RSC Advances 12:22, pages 14022-14051.
Crossref
Ajmeera Ramesh, Basavoju Srinivas, Ravinder Pawar & Allikayala Ramachandraiah. (2022) Synthesis, characterization, crystal structure determination, computational modelling and biological studies of a new tetrakis-(2-hydroxy-5-methylphenyl)(1H-pyrazol-4-yl)methanonezinc(II) complex. Journal of Molecular Structure 1255, pages 132377.
Crossref
Tulika Sharma, Joginder Singh, Bijender Singh, Ramesh Kataria & Vinod Kumar. (2022) Methyl-linked Pyrazoles: Synthetic and Medicinal Perspective. Mini-Reviews in Medicinal Chemistry 22:5, pages 770-804.
Crossref
Seyedeh Zahra Mostashari, Abdollah Fallah Shojaei, Khalil Tabatabaeian, Hassan Kefayati & Shahab Shariati. (2021) Synthesis and characterization of Fe3O4@SiO2-(CH2)3-NH-Asn-M(II) (Cu (II)/ Ni(II)/ Co(II)) and its catalytic application in the synthesis of chromeno-pyrazolo-phthalazine derivatives. Research on Chemical Intermediates 48:2, pages 669-682.
Crossref
Latifah A. Alshabanah, Laila A. Al-Mutabagani, Sobhi M. Gomha & Hoda A. Ahmed. (2022) Three-Component Synthesis of Some New Coumarin Derivatives as Anticancer Agents. Frontiers in Chemistry 9.
Crossref
Santhosh Govindaraju, Nobi Kunnathu Daniel & Sumaiya Tabassum. (2022) Sulfamic acid catalyzed grinding: A facile one-pot approach for the synthesis of polysubstituted pyrazoles under green conditions. Materials Today: Proceedings 62, pages 5336-5340.
Crossref
Ghanshyam Mali, Badrodin A. Shaikh, Shivani Garg, Akhilesh Kumar, Sudipta Bhattacharyya, Rohan D. Erande & Asha V. Chate. (2021) Design, Synthesis, and Biological Evaluation of Densely Substituted Dihydropyrano[2,3- c ]pyrazoles via a Taurine-Catalyzed Green Multicomponent Approach . ACS Omega 6:45, pages 30734-30742.
Crossref
Maryam Kamalzare, Mohammad Reza Ahghari, Mohammad Bayat & Ali Maleki. (2021) Fe3O4@chitosan-tannic acid bionanocomposite as a novel nanocatalyst for the synthesis of pyranopyrazoles. Scientific Reports 11:1.
Crossref
Ravi Kumar Ganta, Nagaraju Kerru, Suresh Maddila & Sreekantha B. Jonnalagadda. (2021) Advances in Pyranopyrazole Scaffolds’ Syntheses Using Sustainable Catalysts—A Review. Molecules 26:11, pages 3270.
Crossref
Chandi C. Malakar, Virender Singh, Vipin Kumar, Dharmender Singh & Raghuram Gujjarappa. (2021) Efficient Approach towards the Polysubstituted 4H-Pyran Hybrid Quinolone Derivatives and Subsequent Copper-Catalyzed Hydroxylation of Haloarenes. HETEROCYCLES 102:3, pages 465.
Crossref
Seyedeh Fatemeh Hojati, Amirhassan Amiri & Elham Fardi. (2020) The application of copolymer‐coated graphene oxide‐Fe 3 O 4 in the highly efficient synthesis of 2′‐aminospiro[indeno[1,2‐ b ]quinoxaline‐11,4′‐[4'H] pyran]‐3′‐carbonitrile and 2′‐aminospiro[indeno‐2,4′‐[4'H]pyran]‐3′‐carbonitrile . Applied Organometallic Chemistry 34:5.
Crossref
Kartikey Dhar Dwivedi, Biplob Borah & L. Raju Chowhan. (2020) Ligand Free One-Pot Synthesis of Pyrano[2,3-c]pyrazoles in Water Extract of Banana Peel (WEB): A Green Chemistry Approach. Frontiers in Chemistry 7.
Crossref
Mohammad Ali Ghasemzadeh, Boshra Mirhosseini-Eshkevari & Mohammad Hossein Abdollahi-Basir. (2019) Green synthesis of spiro[indoline-3,4′-pyrano[2,3-c]pyrazoles] using Fe3O4@l-arginine as a robust and reusable catalyst. BMC Chemistry 13:1.
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.