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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 38, 2008 - Issue 20
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Original Articles

Synthesis of Biscoumarins from 4-Hydroxycoumarin and Aromatic Aldehydes—A Comparative Assessment of Percentage Yield Under Thermal and Microwave-Assisted Conditions

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Pages 3490-3499 | Received 31 Dec 2007, Published online: 29 Sep 2008

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P. D. Baviskar & P. P. Mahulikar. (2023) Curd Water as a Catalytic Solvent for the Preparation of bis-Coumarins. Organic Preparations and Procedures International 0:0, pages 1-9.
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Articles from other publishers (26)

Pooja Garg & Sabbasani Rajasekhara Reddy. (2023) Organo‐Catalytic Approach for Biscoumarin Synthesis via a Biomass‐Derived Sustainable Strategy. ChemistrySelect 8:25.
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Vera L. M. Silva, Rita Silva-Reis, Alexandra Moreira-Pais, Tiago Ferreira, Paula A. Oliveira, Rita Ferreira, Susana M. Cardoso, Javad Sharifi-Rad, Monica Butnariu, Maria Alina Costea & Ioana Grozea. (2022) Dicoumarol: from chemistry to antitumor benefits. Chinese Medicine 17:1.
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Anusaya S. Chavan, Arun S. Kharat, Manisha R. Bhosle, Sambhaji T. Dhumal & Ramrao A. Mane. (2021) CAL-B accelerated novel synthetic protocols for 3,3’-arylidenebis-4-hydroxycoumarins and dimethyl ((substituted phenyl) (phenylamino)methyl) phosphonates. Research on Chemical Intermediates 47:11, pages 4497-4512.
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Hossein Bavandi, Zohreh Habibi & Maryam Yousefi. (2020) Porcine pancreas lipase as a green catalyst for synthesis of bis-4-hydroxy coumarins. Bioorganic Chemistry 103, pages 104139.
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Nishtman Hassanloie, Nader Noroozi Pesyan & Golaleh Sheykhaghaei. (2019) Anchored Ni‐dimethylglyoxime complex on Fe 3 O 4 @SiO 2 core/shell nanoparticles for the clean catalytical synthesis of dicoumarols . Applied Organometallic Chemistry 34:1.
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Navjeet Kaur. (2019) Ionic Liquids: A Versatile Medium for the Synthesis of Six-membered Two Nitrogen- Containing Heterocycles. Current Organic Chemistry 23:1, pages 76-96.
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Soleiman Rahmani & Behzad Zeynizadeh. (2018) Ni0 NPs anchored on acid-activated montmorillonite (Ni0-Mont) as a highly efficient and reusable nanocatalyst for synthesis of biscoumarins and bisdimedones. Research on Chemical Intermediates 45:3, pages 1227-1248.
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Dušica Simijonović, Evangelia-Eirini Vlachou, Zorica D. Petrović, Dimitra J. Hadjipavlou-Litina, Κonstantinos E. Litinas, Nevena Stanković, Nezrina Mihović & Milan P. Mladenović. (2018) Dicoumarol derivatives: Green synthesis and molecular modelling studies of their anti-LOX activity. Bioorganic Chemistry 80, pages 741-752.
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Pramod K. Sahu, Praveen K. Sahu, Manvendra S. Kaurav, Mouslim Messali, Saud M. Almutairi, Puran L. Sahu & Dau D. Agarwal. (2018) One-pot facile and mild construction of densely functionalized pyrimidines in water via consecutive C–C and C–S bonds formation . RSC Advances 8:59, pages 33952-33959.
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Sanaz Razikazemi, Kurosh Rad-Moghadam & Saeedeh Toorchi-Roudsari. (2018) A nano-composite of magnetite and hot-water-soluble starch: a cooperation resulting in an amplified catalytic activity on water. New Journal of Chemistry 42:15, pages 12476-12485.
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Hoda Banari, Hamzeh Kiyani & Alireza Pourali. (2016) Efficient synthesis of bis(indolyl)methanes, bispyrazoles and biscoumarins using 4-sulfophthalic acid. Research on Chemical Intermediates 43:3, pages 1635-1649.
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Ravindra V. Kupwade, Kapil S. Pandit, Uday V. Desai, Makarand A. Kulkarni & Prakash P. Wadgaonkar. (2016) Diethylamine-catalyzed environmentally benign synthesis of 1-oxo-hexahydroxanthenes and bis-coumarins at ambient temperature. Research on Chemical Intermediates 42:7, pages 6313-6325.
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Mohammad Ali Zolfigol, Roya Ayazi-Nasrabadi & Saeed Baghery. (2016) Synthesis of the first nanomagnetic particles with semicarbazide-based acidic ionic liquid tag: an efficient catalyst for the synthesis of 3,3′-(arylmethylene)bis(4-hydroxycoumarin) and 1-carbamato-alkyl-2-naphthol derivatives under mild and green conditi. Applied Organometallic Chemistry 30:7, pages 500-509.
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Ebrahim Mehrasbi, Yaghoub Sarrafi, Amir Vahid & Heshmatollah Alinezhad. (2014) Sulfonic acid-functionalized mesoporous silica nanoparticles (SAMSNs): a recoverable heterogeneous acid catalyst for green synthesis of dicoumarols. Research on Chemical Intermediates 41:7, pages 4929-4941.
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Vikas Padalkar, Kiran Phatangare, Santosh Takale, Rajaram Pisal & Atul Chaskar. (2015) Silica supported sodium hydrogen sulfate and Indion 190 resin: An efficient and heterogeneous catalysts for facile synthesis of bis-(4-hydroxycoumarin-3-yl) methanes. Journal of Saudi Chemical Society 19:1, pages 42-45.
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Nourallah Hazeri, Malek Taher Maghsoodlou, Fatemeh Mir, Mehrnoosh Kangani, Hamideh Saravani & Ebrahim Molashahi. (2014) An efficient one-pot three-component synthesis of tetrahydrobenzo[b]pyran and 3,4-dihydropyrano[c]chromene derivatives using starch solution as catalyst. Chinese Journal of Catalysis 35:3, pages 391-395.
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Ghodsi Mohammadi Ziarani, Alireza Badiei, Masoomeh Azizi & Negar Lashgari. (2013) Efficient One‐Pot Synthesis of Bis(4‐hydroxycoumarin)methanes in the Presence of Sulfonic Acid Functionalized Nanoporous Silica (SBA‐Pr‐SO 3 H) . Journal of the Chinese Chemical Society 60:5, pages 499-502.
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Balu Pawar, Vinod Shinde & Atul Chaskar. (2013) n-Dodecylbenzene Sulfonic Acid (DBSA) as a Novel Brønsted Acid Catalyst for the Synthesis of Bis(indolyl)methanes and Bis(4-hydroxycoumarin-3-yl)methanes in Water. Green and Sustainable Chemistry 03:02, pages 56-60.
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Arpita Das Gupta, Swati Samanta, Rina Mondal & Asok K. Mallik. (2012) A Convenient, Eco-friendly, and Efficient Method for Synthesis of 3,3'-Arylmethylene-bis-4-hydroxycoumarins "On-water". Bulletin of the Korean Chemical Society 33:12, pages 4239-4242.
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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
Abolghasem Davoodnia. (2011) A Highly Efficient and Fast Method for the Synthesis of Biscoumarins Using Tetrabutylammonium Hexatungstate [TBA] 2 [W 6 O 19 ] as Green and Reusable Heterogeneous Catalyst . Bulletin of the Korean Chemical Society 32:12, pages 4286-4290.
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Niloofar Tavakoli-Hoseini, Majid M. Heravi, Fatemeh F. Bamoharram, Abolghasem Davoodnia & Mitra Ghassemzadeh. (2011) An unexpected tetracyclic product isolated during the synthesis of biscoumarins catalyzed by [MIM(CH2)4SO3H][HSO4]: Characterization and X-ray crystal structure of 7-(2-hydroxy-4-oxo-4H-chromen-3-yl)-6H,7H-chromeno[4,3-b]chromen-6-one. Journal of Molecular Liquids 163:3, pages 122-127.
Crossref
Jitender M. Khurana & Sanjay Kumar. (2010) Ionic liquid: an efficient and recyclable medium for the synthesis of octahydroquinazolinone and biscoumarin derivatives. Monatshefte für Chemie - Chemical Monthly 141:5, pages 561-564.
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Hamid Reza Shaterian & Moones Honarmand. (2009) Uncatalyzed, One-pot Synthesis of 3,3′-(Benzylene)- bis(4-hydroxy-2 H -chromen-2-one) Derivatives under Thermal Solvent-free Conditions . Chinese Journal of Chemistry 27:9, pages 1795-1800.
Crossref
Jitender M. Khurana & Sanjay Kumar. (2009) Tetrabutylammonium bromide (TBAB): a neutral and efficient catalyst for the synthesis of biscoumarin and 3,4-dihydropyrano[c]chromene derivatives in water and solvent-free conditions. Tetrahedron Letters 50:28, pages 4125-4127.
Crossref
Saima Qadir, Aijaz Ahmad Dar & Khaliquz Zaman Khan. (2009) ChemInform Abstract: Synthesis of Biscoumarins from 4‐Hydroxycoumarin and Aromatic Aldehydes — A Comparative Assessment of Percentage Yield under Thermal and Microwave‐Assisted Conditions.. ChemInform 40:14.
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