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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 32, 2002 - Issue 6
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Original Articles

MICROWAVE ASSISTED SYNTHESIS OF α,α′-BIS(BENZYLIDENE)KETONES IN DRY MEDIAFootnote*

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Pages 893-896 | Received 12 Apr 2001, Published online: 16 Aug 2006

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Gholam Hossein Mahdavinia, Shahnaz Rostamizadeh, Ali Mohammad Amani & Maryam Mirzazadeh. (2012) NH4H2PO4/SiO2: a recyclable, efficient heterogeneous catalyst for crossed aldol condensation reaction. Green Chemistry Letters and Reviews 5:3, pages 255-281.
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Zahed Karimi-Jaberi & Baharak Pooladian. (2012) A facile synthesis of α,α′-bis(substituted benzylidene) cycloalkanones catalyzed by p-TSA under solvent-free conditions. Green Chemistry Letters and Reviews 5:2, pages 187-193.
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SumitV. Jadhav, Eringathodi Suresh & HariC. Bajaj. (2011) Microwave-assisted solvent-free synthesis of α,α′-bis(substituted benzylidine)cycloalkanones catalyzed by /ZrO2 and B2O3/ZrO2 . Green Chemistry Letters and Reviews 4:3, pages 249-256.
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Yu Wan, Xiu-Mei Chen, Li-Ling Pang, Rui Ma, Cai-Hui Yue, Rui Yuan, Wei Lin, Wei Yin, Rong-Cheng Bo & Hui Wu. (2010) Synthesis and Fluorescence Properties of α,α′-Bis(substituted-benzylidene)cycloalkanones Catalyzed by 1-Methyl-3(2-(sulfooxy)ethyl)-1H-imidazol-3-ium Chloride. Synthetic Communications 40:15, pages 2320-2328.
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Azim Mohammadpour & Enayatollah Sheikhhosseini. (2022) Synthesis of SrCO 3 Nanoparticles Supported on Montmorillonite as Efficient Catalyst in the Preparation of α, ά-bis(substituted benzylidene) cycloalkanones . Letters in Organic Chemistry 19:11, pages 983-992.
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Li Q. Kang, Yue Q. Cai, Hao Wang & Li H. Li. (2013) Solvent-free catalytic preparation of 2,6-dibenzylidenecycloalkanones using 2-hydroxyethylammonium acetate ionic liquid as catalyst. Monatshefte für Chemie - Chemical Monthly 145:2, pages 337-340.
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Nader Ghaffari Khaligh & Taraneh Mihankhah. (2013) Aldol condensations of a variety of different aldehydes and ketones under ultrasonic irradiation using poly(N-vinylimidazole) as a new heterogeneous base catalyst under solvent-free conditions in a liquid-solid system. Chinese Journal of Catalysis 34:12, pages 2167-2173.
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Kirat Rawal, Manish Kumar Mishra, Manish Dixit & Meka Srinivasarao. (2012) Microwave assisted solvent free synthesis of α,ά-bis (arylidene) cycloalkanones by sulfated zirconia catalyzed cross aldol condensation of aromatic aldehydes and cycloalkanones. Journal of Industrial and Engineering Chemistry 18:4, pages 1474-1481.
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Evgeniya Leonova, Mihail Makarov, Zinaida Klemenkova & Irina Odinets. (2010) Lewis Acids as Mild and Effective Catalysts for the Synthesis of 3,5‐Bis[(hetero)arylidene]piperidin‐4‐ones . Helvetica Chimica Acta 93:10, pages 1990-1999.
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Ghodsi MOHAMMADI ZIARANI, Alireza BADIEI, Alireza ABBASI & Zahra FARAHANI. (2009) Cross‐aldol Condensation of Cycloalkanones and Aromatic Aldehydes in the Presence of Nanoporous Silica‐based Sulfonic Acid (SiO 2 ‐Pr‐SO 3 H) under Solvent Free Conditions . Chinese Journal of Chemistry 27:8, pages 1537-1542.
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. (2009) Acetate-Promoted Aldol-Type Reaction: Scope and Reactivity of Acetates and Aldehydes. Bulletin of the Korean Chemical Society 30:4, pages 797-802.
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. (2008) Synthesis and Spectral Linearity in Substituted Styryl 4-Methyl-1-naphthyl Ketones. Journal of the Korean Chemical Society 52:4, pages 369-379.
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Abbas ZALI, Kamal GHANI, Arash SHOKROLAHI & Mohammad Hossein KESHAVARZ. (2008) Carbon-Based Solid Acid as an Efficient and Reusable Catalyst for Cross-Aldol Condensation of Ketones with Aromatic Aldehydes under Solvent-Free Conditions. Chinese Journal of Catalysis 29:7, pages 602-606.
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Li-Tao An, Jian-Ping Zou & Li-Li Zhang. (2008) Polymer-supported sulphonic acid catalyzed cross-aldol condensation: An expeditious synthesis of α,α′-bis(substituted benzylidene) cycloalkanones. Catalysis Communications 9:3, pages 349-354.
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Mohammad A. Bigdeli, Gholam Hossein Mahdavinia, Saeed Jafari & Hassan Hazarkhani. (2007) Wet 2,4,6-trichloro[1,3,5]triazine (TCT) an efficient catalyst for synthesis of -bis(substituted-benzylidene) cycloalkanones under solvent-free conditions . Catalysis Communications 8:12, pages 2229-2231.
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. (2007) Synthesis, Characterization and Correlation Analysis in Styryl 6-Methoxy-2-Naphthyl Ketones. Journal of the Korean Chemical Society 51:2, pages 115-124.
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A.F.M. Motiur Rahman, Byeong-Seon Jeong, Dong Hyeon Kim, Jung Ki Park, Eung Seok Lee & Yurngdong Jahng. (2007) A facile synthesis of α,α′-bis(substituted-benzylidene)-cycloalkanones and substituted-benzylidene heteroaromatics: utility of NaOAc as a catalyst for aldol-type reaction. Tetrahedron 63:11, pages 2426-2431.
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Satoshi Kamiguchi, Satoru Nishida, Ikuko Takahashi, Hideki Kurokawa, Hiroshi Miura & Teiji Chihara. (2006) Aldol condensation of acyclic ketones with benzaldehyde and subsequent cyclodehydration to form indenes over halide cluster catalysts. Journal of Molecular Catalysis A: Chemical 255:1-2, pages 117-122.
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Biswanath Das, Ponnaboina Thirupathi, Ibram Mahender & Kongara Ravinder Reddy. (2006) Convenient and facile cross-Aldol condensation catalyzed by molecular iodine: An efficient synthesis of α,α′-bis(substituted-benzylidene) cycloalkanones. Journal of Molecular Catalysis A: Chemical 247:1-2, pages 182-185.
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X. Cai, B. Xie & H. Guo. (2006) Synthesis of α,α′-bis(R-benzylidene)cycloalkanones catalyzed by potassium hydrogen sulfate under solvent-free conditions. Chemical Papers 60:4.
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J. S. Yadav, B. V. Subba Reddy, A. Nagaraju & J. A. R. P. Sarma. (2010) ChemInform Abstract: Microwave Assisted Synthesis of α,α′‐Bis(benzylidene)ketones in Dry Media.. ChemInform 33:34.
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