Publication Cover
Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 36, 2006 - Issue 18
428
Views
63
CrossRef citations to date
0
Altmetric
Original Articles

Convenient Preparation of Pyrano Benzopyranes in Aqueous Media

&
Pages 2737-2742 | Received 15 Feb 2006, Published online: 16 Feb 2007

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

Read on this site (10)

Arjun V. Nakhate, Ajit P. Ingale & Sandeep V. Shinde. (2023) Silica Triflate Promoted Highly Efficient and Solvent-Free One-Pot Multicomponent Protocol for Synthesis of 2-Amino-4H-Chromenes. Polycyclic Aromatic Compounds 43:2, pages 1676-1692.
Read now
George Kupar Kharmawlong, Ridaphun Nongrum, John Elisa Kumar, Bhusan Chhetri, Arun Kumar Yadav & Rishanlang Nongkhlaw. (2022) A new approach for the synthesis of biologically active chromene compounds using a photo catalyst TiO2-Ag. Synthetic Communications 52:2, pages 229-249.
Read now
Vinod T. Kamble, Amit S. Waghmare, Vaishali D. Murade & Kailas R. Kadam. (2021) Silica chemisorbed bis(hydrogensulphato)benzene (SiO2-BHSB) as a new, efficient, and recyclable catalyst for the synthesis of 5-oxopyrono[3,2-c]chromene scaffolds in water-based solvent. Phosphorus, Sulfur, and Silicon and the Related Elements 196:12, pages 1038-1048.
Read now
U. P. Patil, Rupesh C. Patil & Suresh S. Patil. (2021) Biowaste-Derived Heterogeneous Catalyst for the One-Pot Multicomponent Synthesis of Diverse and Densely Functionalized 2-Amino-4H-Chromenes. Organic Preparations and Procedures International 53:2, pages 190-199.
Read now
Ankitkumar J. Patel, Amitkumar B. Dholakia & Vishant C. Patel. (2021) A green perspective: Synthesis of 2-chloro-3-formylquinolines and its derivatives. Synthetic Communications 51:2, pages 163-190.
Read now
Danish Shahzad, Aamer Saeed, Muhammad Faisal, Fayaz Ali Larik, Salma Bilquees & Pervaiz Ali Channar. (2019) Recent Synthetic Approaches to 3,3′-(Methylene)bis(Coumarins). Organic Preparations and Procedures International 51:3, pages 199-239.
Read now
Behrooz Maleki. (2016) Green Synthesis of bis-Coumarin and Dihydropyrano[3,2-c]chromene Derivatives Catalyzed by o-Benzenedisulfonimide. Organic Preparations and Procedures International 48:3, pages 303-318.
Read now
Navjeet Kaur & Dharma Kishore. (2014) Microwave-Assisted Synthesis of Six-Membered O,O-Heterocycles. Synthetic Communications 44:21, pages 3082-3111.
Read now
Hamid Reza Shaterian & Moones Honarmand. (2011) Task-Specific Ionic Liquid as the Recyclable Catalyst for the Rapid and Green Synthesis of Dihydropyrano[3,2-c]chromene Derivatives. Synthetic Communications 41:23, pages 3573-3581.
Read now

Articles from other publishers (53)

Shahin Papi, Saeed Jamehbozorgi, Atisa Yazdanipour & Majid Ramezani. (2023) Cu-coordinated aminomethyl pyridine-modified magnetic nanoparticles: An excellent active center for the synthesis of pyrano[3,2-c]chromene derivatives. Inorganic Chemistry Communications 158, pages 111538.
Crossref
Partha Pratim Dutta, Faruk Alam, Biplab Kumar Dey & Rajeev K. Tonk. 2023. The Role of Chromenes in Drug Discovery and Development. The Role of Chromenes in Drug Discovery and Development 245 280 .
Masumeh Heydari, Ali Asghar Mohammadi & Mohammadreza Mosleh. (2022) The regioselective one-pot four-component synthesis of novel functionalized 4H-pyrano[2, 3-b]quinoline derivatives using DABCO as a homogeneous organocatalyst. Molecular Diversity 27:4, pages 1843-1851.
Crossref
Y. R. Shelke, V. D. Bobade, D. R. Tope, J. A. Agashe & A. V. Borhade. (2023) A Simple, Green, and Efficient One-Pot Synthesis of Dihydro­pyrano[3,2-c]chromene Derivatives Using MgMnO3@ZrO2@CoO as a Core–Shell Nanocrystalline Catalyst. Russian Journal of Organic Chemistry 59:4, pages 663-673.
Crossref
Abhijit Rudra Paul, Sudhan Debnath & Swapan Majumdar. (2023) Water‐SDS‐Ionic Liquid Catalytic System for the Synthesis of Pyrano‐chromenes and in‐silicio Approach to Predict Inhibitory Activity Against Mpro of SARS‐CoV‐2**. ChemistrySelect 8:4.
Crossref
Enayatollah Sheikhhosseini & Mahdieh Yahyazadehfar. (2023) Synthesis and characterization of an Fe-MOF@Fe3O4 nanocatalyst and its application as an organic nanocatalyst for one-pot synthesis of dihydropyrano[2,3-c]chromenes. Frontiers in Chemistry 10.
Crossref
Fatemeh Ghorbanipour, Shefa Mirani Nezhad, Seied Ali Pourmousavi, Ehsan Nazarzadeh Zare & Golnaz Heidari. (2023) Superparamagnetic polymer nanocomposite as a catalyst for the synthesis of pyrano[3,2-c]chromene, pyrano[2,3-c]pyrazole, and benzylpyrazolyl coumarin. Inorganic Chemistry Communications 147, pages 110271.
Crossref
Mehraneh Aghaei-Hashjin, Asieh Yahyazadeh & Esmayeel Abbaspour-Gilandeh. (2021) Zr@IL-Fe 3 O 4 MNPs as an efficient and green heterogeneous magnetic nanocatalyst for the one-pot three-component synthesis of highly substituted pyran derivatives under solvent-free conditions . RSC Advances 11:38, pages 23491-23505.
Crossref
Ahmed M. El-Agrody, Ahmed M. Fouda, Mohammed A. Assiri, Ahmed Mora, Tarik E. Ali, Mohammed M. Alam & Mohammad Y. Alfaifi. (2020) In vitro anticancer activity of pyrano[3, 2-c]chromene derivatives with both cell cycle arrest and apoptosis induction. Medicinal Chemistry Research 29:4, pages 617-629.
Crossref
Nader Noroozi Pesyan, Ghasem Rezanejade Bardajee, Elmira Kashani, Marzieh Mohammadi & Hana Batmani. (2019) Ni(II)-Schiff base/SBA-15: a nanostructure and reusable catalyst for one-pot three-component green synthesis of 3,4-dihydropyrano[3,2-c]chromene derivatives. Research on Chemical Intermediates 46:1, pages 347-367.
Crossref
Moaz M. Abdou, Rasha A. El-Saeed & Samir Bondock. (2019) Recent advances in 4-hydroxycoumarin chemistry. Part 2: Scaffolds for heterocycle molecular diversity. Arabian Journal of Chemistry 12:7, pages 974-1003.
Crossref
Saeed Balalaie, Yasaman Doroudian, Nahid Zarezadeh, Hossein Zahedian Tejeneki & Frank Rominger. (2019) Regiocontrolled Synthesis of Fused Heterocyclic Skeletons Containing Pyranocoumarin Backbones. ChemistrySelect 4:31, pages 8921-8924.
Crossref
Daryoush Tahmassebi, John E. Blevins & Shori S. Gerardot. (2019) Zn(L‐proline) 2 as an efficient and reusable catalyst for the multi‐component synthesis of pyran‐annulated heterocyclic compounds . Applied Organometallic Chemistry 33:4.
Crossref
D.S. Bhagat, S.G. Pande, M.V. Katariya, R.P. Pawar & P.S. Kendrekar. (2019) Microwave Assisted One Pot Synthesis of 3,4-Dihydropyrano[c]chromene Derivatives using [Emim]OH Ionic Liquid as Novel Catalyst. Asian Journal of Chemistry 31:4, pages 829-833.
Crossref
Seyedeh Fatemeh Hojati, Amirhassan Amiri, Nasrin MoeiniEghbali & Sakineh Mohamadi. (2018) Polypyrrole/Fe 3 O 4 /CNT as a recyclable and highly efficient catalyst for one-pot three-component synthesis of pyran derivatives . Applied Organometallic Chemistry 32:4, pages e4235.
Crossref
Amna M. Abdella, Magda F. Mohamed, Aly F. Mohamed, Ahmed H. M. Elwahy & Ismail A. Abdelhamid. (2018) Novel bis(dihydropyrano[3,2- c ]chromenes): Synthesis, Antiproliferative Effect and Molecular Docking Simulation . Journal of Heterocyclic Chemistry 55:2, pages 498-507.
Crossref
Abdelaziz SOUIZI, Soukaina CHEHAB, Youssef MERROUN, Touriya GHAILANE, Rachida GHAILANE & Said BOUKHRIS. (2018) A Green and Efficient Method for the Synthesis of 3,4- Dihydropyrano[c]chromene using Phosphate Fertilizers (MAP, DAP and TSP) as Heterogeneous Catalysts. Journal of the Turkish Chemical Society Section A: Chemistry 5:2, pages 355-370.
Crossref
Ebrahim Mollashahi & Mohammad Nikraftar. (2018) Nano-SiO 2 catalyzed three-component preparations of pyrano[2,3- d ]pyrimidines, 4H-chromenes, and dihydropyrano[3,2- c ]chromenes. Journal of Saudi Chemical Society 22:1, pages 42-48.
Crossref
Hamzeh Kiyani & Mohsen Tazari. (2017) Aqua one-pot, three-component synthesis of dihydropyrano[3,2-c]chromenes and amino-benzochromenes catalyzed by sodium malonate. Research on Chemical Intermediates 43:11, pages 6639-6650.
Crossref
S. Kanakaraju, B. Prasanna, Srinivas Basavoju & G.V.P. Chandramouli. (2017) Ammonium acetate catalyzed an efficient one-pot three component synthesis of pyrano[3,2-c]chromene derivatives. Arabian Journal of Chemistry 10, pages S2705-S2713.
Crossref
Devji S. Patel, Jemin R. Avalani & Dipak K. Raval. (2016) One-pot solvent-free rapid and green synthesis of 3,4-dihydropyrano[c]chromenes using grindstone chemistry. Journal of Saudi Chemical Society 20, pages S401-S405.
Crossref
Nileshkumar D. Vala, Hardik H. Jardosh & Manish P. Patel. (2016) PS-TBD triggered general protocol for the synthesis of 4 H -chromene, pyrano[4,3- b ]pyran and pyrano[3,2- c ]chromene derivatives of 1 H -pyrazole and their biological activities. Chinese Chemical Letters 27:1, pages 168-172.
Crossref
Yinglei Wang, Hongyong Ye, Guangling Zuo & Jun Luo. (2015) Synthesis of a novel poly (ethylene glycol) grafted N,N-dimethylaminopyridine functionalized dicationic ionic liquid and its application in one-pot synthesis of 3,4-dihydropyrano[3,2-c]chromene derivatives in water. Journal of Molecular Liquids 212, pages 418-422.
Crossref
Malek Taher Maghsoodlou, Nourallah Hazeri, Mojtaba Lashkari, Fereshteh Nejad Shahrokhabadi, Behzad Naghshbandi, Mohammad Saeed Kazemi-doost, Mahnaz Rashidi, Fatemeh Mir, Mehrnoosh Kangani & Sajjad Salahi. (2014) Saccharose as a new, natural, and highly efficient catalyst for the one-pot synthesis of 4,5-dihydropyrano[3,2-c]chromenes, 2-amino-3-cyano-4H-chromenes, 1,8-dioxodecahydroacridine, and 2-substituted benzimidazole derivatives. Research on Chemical Intermediates 41:10, pages 6985-6997.
Crossref
Sayyed Mostafa Habibi-Khorassani, Malek Taher Maghsoodlou, Mehdi Shahraki, Sadegh Talaiefar, Mohammad Amin Kazemian & Jasem Aboonajmi. (2014) Full kinetics and a mechanistic investigation of three-component reaction catalyzed by sodium acetate leading to 3,4-dihydropyrano[c]chromene. Research on Chemical Intermediates 41:8, pages 5821-5837.
Crossref
Ramandeep Kaur, Fatima Naaz, Sahil Sharma, Samir Mehndiratta, Manish Kumar Gupta, Preet Mohinder Singh Bedi & Kunal Nepali. (2015) Screening of a library of 4-aryl/heteroaryl-4H-fused pyrans for xanthine oxidase inhibition: synthesis, biological evaluation and docking studies. Medicinal Chemistry Research 24:8, pages 3334-3349.
Crossref
Arijit Saha, Soumen Payra & Subhash Banerjee. (2015) On water synthesis of pyran–chromenes via a multicomponent reactions catalyzed by fluorescent t-ZrO 2 nanoparticles . RSC Advances 5:123, pages 101664-101671.
Crossref
Maliheh Safaiee, Mohammad Ali Zolfigol, Fatemeh Afsharnadery & Saeed Baghery. (2015) Synthesis of a novel dendrimer core of oxo-vanadium phthalocyanine magnetic nano particles: as an efficient catalyst for the synthesis of 3,4-dihydropyrano[c]chromenes derivatives under green condition. RSC Advances 5:124, pages 102340-102349.
Crossref
Fernanda G. Medina, Joaquín G. Marrero, Mariana Macías-Alonso, Magdalena C. González, Iván Córdova-Guerrero, Ariana G. Teissier García & Soraya Osegueda-Robles. (2015) Coumarin heterocyclic derivatives: chemical synthesis and biological activity. Natural Product Reports 32:10, pages 1472-1507.
Crossref
Kapil S. Pandit, Pramod V. Chavan, Uday V. Desai, Makarand A. Kulkarni & Prakash P. Wadgaonkar. (2015) Tris-hydroxymethylaminomethane (THAM): a novel organocatalyst for a environmentally benign synthesis of medicinally important tetrahydrobenzo[b]pyrans and pyran-annulated heterocycles. New Journal of Chemistry 39:6, pages 4452-4463.
Crossref
Nasim Esmati, Mahsa Foroughian, Mina Saeedi, Mohammad Mahdavi, Mehdi Khoshneviszadeh, Omidreza Firuzi, Nader Tanideh, Ramin Miri, Najmeh Edraki, Abbas Shafiee & Alireza Foroumadi. (2015) Synthesis and Cytotoxic Activity of Some Novel Dihyrobenzo[ h ]pyrano[3,2- c ]chromene Derivatives . Journal of Heterocyclic Chemistry 52:1, pages 97-104.
Crossref
Islam El Azab, Mohamed Youssef & Mahmoud Amin. (2014) Microwave-Assisted Synthesis of Novel 2H-Chromene Derivatives Bearing Phenylthiazolidinones and Their Biological Activity Assessment. Molecules 19:12, pages 19648-19664.
Crossref
Parisa Gholamzadeh, Ghodsi Mohammadi Ziarani, Negar Lashgari, Alireza Badiei & Paria Asadiatouei. (2014) Silica functionalized propyl sulfonic acid (SiO2-Pr-SO3H): An efficient catalyst in organic reactions. Journal of Molecular Catalysis A: Chemical 391, pages 208-222.
Crossref
M.E. Sedaghat, M. Rajabpour Booshehri, M.R. Nazarifar & F. Farhadi. (2014) Surfactant modified bentonite (CTMAB-bentonite) as a solid heterogeneous catalyst for the rapid synthesis of 3,4-dihydropyrano[c]chromene derivatives. Applied Clay Science 95, pages 55-59.
Crossref
Sayyed Mostafa Habibi-Khorassani, Malek Taher Maghsoodlou, Mehdi Shahraki, Sadegh Talaiefar & Jasem Aboonajmi. (2014) Kinetic and Mechanistic Investigation of Pyrano[2,3-d]pyrimidine Formation in the Presence of Catalyst under Novel One-Pot Three-Component Reaction. Organic Chemistry International 2014, pages 1-10.
Crossref
Zahra Vafajoo, Hojat Veisi, Malek Taher Maghsoodlou & Hossein Ahmadian. (2014) Electrocatalytic multicomponent assembling of aldehydes, 4-hydroxycoumarin and malononitrile: An efficient approach to 2-amino-5-oxo-4,5-dihydropyrano(3,2-c)chromene-3-carbonitrile derivatives. Comptes Rendus Chimie 17:4, pages 301-304.
Crossref
Yinglei Wang, Jun Luo, Tantan Xing & Zuliang Liu. (2013) Synthesis of a novel piperidine-functionalized poly(ethylene glycol) bridged dicationic ionic liquid and its application in one-pot synthesis of substituted 2-amino-2-chromenes and 3,4-dihydropyrano[3,2-c]chromenes in aqueous media. Monatshefte für Chemie - Chemical Monthly 144:12, pages 1871-1876.
Crossref
Shubha Jain, Deepika Rajguru, Balwant S. Keshwal & Aman D. Acharya. (2013) Solvent-Free Green and Efficient One-Pot Synthesis of Dihydropyrano[3,2- c ]chromene Derivatives . ISRN Organic Chemistry 2013, pages 1-5.
Crossref
JASHMIN P PATEL, JEMIN R AVALANI & DIPAK K RAVAL. (2013) Polymer supported sulphanilic acid: A highly efficient and recyclable green heterogeneous catalyst for the construction of 4,5-dihydropyrano[3,2-c]chromenes under solvent-free conditions. Journal of Chemical Sciences 125:3, pages 531-536.
Crossref
Khodabakhsh Niknam & Abolhassan Piran. (2013) Silica-Grafted Ionic Liquids as Recyclable Catalysts for the Synthesis of 3,4-Dihydropyrano[c]chromenes and Pyra-no[2,3-c]pyrazoles. Green and Sustainable Chemistry 03:02, pages 1-8.
Crossref
Ghodsi Mohammadi Ziarani & Parvin Hajiabbasi. (2013) Recent Application of 4-Hydroxycoumarin in Multi-Component Reactions. HETEROCYCLES 87:7, pages 1415.
Crossref
Ravikumar Nagalapalli, Satyanarayana Reddy Jaggavarapu, Venkata Prasad Jalli, Anand Solomon Kamalakaran & Gopikrishna Gaddamanugu. (2013) Ultrasound Promoted Green and Facile One-Pot Multicomponent Synthesis of 3,4-dihydropyrano[ c ]chromene Derivatives . Journal of Chemistry 2013, pages 1-8.
Crossref
Khodabakhsh NIKNAM & Abbas JAMALI. (2012) Silica-Bonded N-Propylpiperazine Sodium n-Propionate as Recyclable Basic Catalyst for Synthesis of 3,4-Dihydropyrano[c]chromene Derivatives and Biscoumarins. Chinese Journal of Catalysis 33:11-12, pages 1840-1849.
Crossref
Nilesh J. Thumar & Manish P. Patel. (2012) Synthesis, Characterization, and In Vitro Microbial Evaluation of Some New 4 H ‐Chromene and Quinoline Derivatives of 1 H ‐Pyrazole . Journal of Heterocyclic Chemistry 49:5, pages 1169-1178.
Crossref
Khalil Tabatabaeian, Hannaneh Heidari, Manouchehr Mamaghani & Nosrat O. Mahmoodi. (2012) Ru(II) complexes bearing tertiary phosphine ligands: a novel and efficient homogeneous catalyst for one‐pot synthesis of dihydropyrano[3,2‐ c ]chromene and tetrahydrobenzo[ b ]pyran derivatives . Applied Organometallic Chemistry 26:2, pages 56-61.
Crossref
Bahareh Sadeghi, Alireza Hassanabadi & Somayeh Bidaki. (2011) Synthesis of Nanoparticles Silica Supported Sulfuric Acid. Journal of Chemical Research 35:11, pages 666-668.
Crossref
Divyesh C. Mungra, Manish P. Patel, Dhanji P. Rajani & Ranjan G. Patel. (2011) Synthesis and identification of β-aryloxyquinolines and their pyrano[3,2-c]chromene derivatives as a new class of antimicrobial and antituberculosis agents. European Journal of Medicinal Chemistry 46:9, pages 4192-4200.
Crossref
T.S.R. Prasanna & K. Mohana Raju. (2011) Silica Gel Promoted Mild, Efficient and Inexpensive Protocol for the Preparation of 3,4-dihydropyrano[c]chromenes. Journal of the Korean Chemical Society 55:4, pages 662-665.
Crossref
Majid M. Heravi, Masoumeh Zakeri & Narges Mohammadi. (2011) Morpholine Catalyzed One-pot Multicomponent Synthesis of Compounds Containing Chromene Core in Water. Chinese Journal of Chemistry 29:6, pages 1163-1166.
Crossref
H. Nagabhushana, S. Sandeep Saundalkar, L. Muralidhar, B.M. Nagabhushana, C.R. Girija, D. Nagaraja, M.A. Pasha & V.P. Jayashankara. (2011) α-Fe2O3 nanoparticles: An efficient, inexpensive catalyst for the one-pot preparation of 3,4-dihydropyrano[c]chromenes. Chinese Chemical Letters 22:2, pages 143-146.
Crossref
H.R. Shaterian, M. Arman & F. Rigi. (2011) Domino Knoevenagel condensation, Michael addition, and cyclization using ionic liquid, 2-hydroxyethylammonium formate, as a recoverable catalyst. Journal of Molecular Liquids 158:2, pages 145-150.
Crossref
Majid M. Heravi, Behnoush Alimadadi Jani, Fatemeh Derikvand, Fatemeh F. Bamoharram & Hossein A. Oskooie. (2008) Three component, one-pot synthesis of dihydropyrano[3,2-c]chromene derivatives in the presence of H6P2W18O62· 18H2O as a green and recyclable catalyst. Catalysis Communications 10:3, pages 272-275.
Crossref
M. Kidwai & S. Saxena. (2007) Convenient Preparation of Pyrano Benzopyranes in Aqueous Media.. ChemInform 38:7.
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.