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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 32, 2002 - Issue 3
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Original Articles

POTASSIUM EXCHANGED LAYERED ZIRCONIUM PHOSPHATE AS BASE CATALYST IN KNOEVENAGEL CONDENSATION

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Pages 355-362 | Received 19 Mar 2001, Published online: 16 Aug 2006

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Read on this site (4)

Jicheng Zhang, Tao Jiang, Buxing Han, Anlian Zhu & Xiumin Ma. (2006) Knoevenagel Condensation Catalyzed by 1,1,3,3‐Tetramethylguanidium Lactate. Synthetic Communications 36:22, pages 3305-3317.
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Wei‐Xiong Zuo, Ruimao Hua & Xianqing Qiu. (2004) ReBr(CO)5‐Catalyzed Knoevenagel Condensation. Synthetic Communications 34:17, pages 3219-3225.
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A. Venkat Narsaiah & K. Nagaiah. (2003) An Efficient Knoevenagel Condensation Catalyzed by LaCl3.7H2O in Heterogeneous Medium# . Synthetic Communications 33:21, pages 3825-3832.
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Articles from other publishers (21)

Ravish Soni, Rubej Khan, Anand S. Burange, Amber J. Sahani, Samatha Bavera, S.N. Achary & Radha V. Jayaram. (2022) Catalytic application of K2Ce(PO4)2 in Knoevenagel condensation -A green protocol. Journal of the Indian Chemical Society 99:10, pages 100680.
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Xinli Li, Ju Zhang, Yunsheng Dai, Congming Tang & Chenglong Yang. (2021) Confined alkali metal ions in two-dimensional aluminum phosphate promoted activity for the condensation of lactic acid to 2,3-pentanedione. New Journal of Chemistry 45:31, pages 13806-13813.
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Tiefeng Wang, Xu Li, Xiaosheng Zhang & Jinxiang Dong. (2021) Rapid Synthesis of Asymmetric Methyl-Alkyl Carbonates Catalyzed by α-KMgPO4 in a Sealed-Vessel Reactor Monowave 50. Catalysts 11:4, pages 499.
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Arup Datta. (2020) Bismuth (III) Triflate: A Mild, Efficient Promoter for the Synthesis of Trisubstituted Alkenes through Knoevenagel Condensation. Oriental Journal Of Chemistry 36:05, pages 843-849.
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Afsaneh Rashidizadeh, Hamid Reza Esmaili Zand, Hossein Ghafuri & Zeynab Rezazadeh. (2020) Graphitic Carbon Nitride Nanosheet/FeWO 4 Nanoparticle Composite for Tandem Photooxidation/Knoevenagel Condensation . ACS Applied Nano Materials 3:7, pages 7057-7065.
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Hossein Ghafuri, Ghazaleh Jafari, Afsaneh Rashidizadeh & Faranak Manteghi. (2019) Co2+ immobilized on highly ordered mesoporous graphitic carbon nitride (ompg-C3N4/Co2+) as an efficient and recyclable heterogeneous catalyst for one-pot tandem selective photo-oxidation/Knoevenagel condensation. Molecular Catalysis 475, pages 110491.
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Ornelio Rosati, Daniela Lanari, Raffaella Scavo, Diana Persia, Fabio Marmottini, Morena Nocchetti, Massimo Curini & Oriana Piermatti. (2018) Zirconium potassium phosphate methyl and/or phenyl phosphonates as heterogeneous catalysts for Knoevenagel condensation under solvent free conditions. Microporous and Mesoporous Materials 268, pages 251-259.
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Mourad Chioua, Abdelouahid Samadi, Denis Postel, Jan Balzarini & Jos? Marco-Contelles. (2014) Synthesis of 5-Amino-3,3-dimethyl-7-phenyl-3 H -[1,2]oxathiolo[4,3- b ]pyridine-6-carbonitrile 1,1-Dioxides . Journal of Heterocyclic Chemistry 51:5, pages 1452-1456.
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You Lv, Xufeng Yan, Lijun Yan, Zewei Wang, Jie Chen, Hongmei Deng, Min Shao, Hui Zhang & Weiguo Cao. (2013) An efficient one-pot three-component process for the synthesis of highly substituted perfluoroalkylated cyclopentadienes. Tetrahedron 69:21, pages 4205-4210.
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Ruoyu Chen, Jianwu Wang, Hongning Wang, Wei Yao & Jing Zhong. (2011) Photocatalytic degradation of methyl orange in aqueous solution over titania-pillared ?-zirconium phosphate. Solid State Sciences 13:3, pages 630-635.
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Graça M. S. R. O. Rocha, Teresa M. Santos & Cláudia S. S. Bispo. (2010) Study of Selectivity of Metal Phosphates and Phosphonates in Baeyer–Villiger Oxidations. Catalysis Letters 141:1, pages 100-110.
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Yoshio Ono. 2002. Encyclopedia of Catalysis. Encyclopedia of Catalysis.
Graça M.S.R.O. Rocha, Rui M.A. Domingues, Mário M.Q. Simões & Artur M.S. Silva. (2009) Catalytic activity of tetravalent metal phosphates and phosphonates on the oxidation of (+)-3-carene. Applied Catalysis A: General 353:2, pages 236-242.
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Brindaban C. Ranu & Ranjan Jana. (2006) Ionic Liquid as Catalyst and Reaction Medium – A Simple, Efficient and Green Procedure for Knoevenagel Condensation of Aliphatic and Aromatic Carbonyl Compounds Using a Task-Specific Basic Ionic Liquid. European Journal of Organic Chemistry 2006:16, pages 3767-3770.
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. 2006. Name Reactions. Name Reactions 329 330 .
Sun Qi, Shi Lan‐Xiang, Ge Ze‐Mei, Cheng Tie‐Ming & Li Run‐Tao. (2005) An Efficient and Green Procedure for the Knoevenagel Condensation Catalyzed by Urea. Chinese Journal of Chemistry 23:6, pages 745-748.
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RenQuan Zeng, XiangKai Fu, ChengBin Gong, Yan Sui, XueBing Ma & XinBin Yang. (2005) Preparation and catalytic property of the solid base supported on the mixed zirconium phosphate phosphonate for Knoevenagel condensation. Journal of Molecular Catalysis A: Chemical 229:1-2, pages 1-5.
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Massimo Curini, Francesca Montanari, Ornelio Rosati, Eduardo Lioy & Roberto Margarita. (2003) Layered zirconium phosphate and phosphonate as heterogeneous catalyst in the preparation of pyrroles. Tetrahedron Letters 44:20, pages 3923-3925.
Crossref
Umberto Costantino, Massimo Curini, Francesca Montanari, Morena Nocchetti & Ornelio Rosati. (2003) Hydrotalcite-like compounds as catalysts in liquid phase organic synthesis. Journal of Molecular Catalysis A: Chemical 195:1-2, pages 245-252.
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Jie Jack LiJie Jack Li. 2003. Name Reactions. Name Reactions 220 221 .
Massimo Curini, Francesco Epifano, Maria Carla Marcotullio, Ornelio Rosati & Andre Tsadjout. (2010) ChemInform Abstract: Potassium Exchanged Layered Zirconium Phosphate as Base Catalyst in Knoevenagel Condensation.. ChemInform 33:26.
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