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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 29, 1999 - Issue 4
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Original Articles

Application of Microwave Irradiation Techniques for the Syntheses of Cinnamic Acids by Doebner Condensation

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Pages 573-581 | Received 06 May 1998, Published online: 17 Sep 2007

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Alok Kumar Mitra, Aparna De & Nilay Karchaudhur. (2000) Solid State Regeneration of Ketones From Semicarbazones Using Antimony Trichloride Under Microwave Irradiation. Synthetic Communications 30:9, pages 1651-1656.
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Jiangmei Zheng, Ruobin Sun, Dan Wu, Pengcheng Chen & Pu Zheng. (2024) Engineered Zea mays phenylalanine ammonia-lyase for improve the catalytic efficiency of biosynthesis trans-cinnamic acid and p-coumaric acid. Enzyme and Microbial Technology 176, pages 110423.
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Jaewoo Son, Jun Hong Jang, In Hyeok Choi, Chang Gyu Lim, Eun Jung Jeon, Hyun Bae Bang & Ki Jun Jeong. (2021) Production of trans-cinnamic acid by whole-cell bioconversion from l-phenylalanine in engineered Corynebacterium glutamicum. Microbial Cell Factories 20:1.
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Marcilio M. de Moraes & Massuo J. Kato. (2021) Biosynthesis of Pellucidin A in Peperomia pellucida (L.) HBK. Frontiers in Plant Science 12.
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Ying Zang, Meijuan Xia, Zhaojuan Zheng & Jia Ouyang. (2019) Development of a high‐efficiency trans ‐cinnamic acid bioproduction method by pH‐controlled separation technology . Journal of Chemical Technology & Biotechnology 94:7, pages 2364-2371.
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Palani Elamathi, Govindasamy Chandrasekar, Subramani Muthuraman & Murali Krishna Kolli. (2019) Pore size engineering of hexagonal mesoporous carbon nitride (HMCN) for high catalytic performance in the synthesis of α, β-unsaturated acid and its derivatives. Applied Surface Science 463, pages 481-491.
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Louis M. M. Mouterde & Florent Allais. (2018) Microwave-Assisted Knoevenagel-Doebner Reaction: An Efficient Method for Naturally Occurring Phenolic Acids Synthesis. Frontiers in Chemistry 6.
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P. Elamathi & G. Chandrasekar. (2018) Pore Size Architecture of Hexagonal Mesoporous Carbon Nitride (HMCN) for Metal-Free Synthesis of p-Hydroxycinnamic Acid. Catalysis Letters 148:6, pages 1758-1767.
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Richard C. LarockRichard C. Larock & Gilson Zeni. 2018. Comprehensive Organic Transformations. Comprehensive Organic Transformations 1 16 .
Hitesh S. Pawar, Adhirath S. Wagh & Arvind M. Lali. (2016) Triethylamine: a potential N-base surrogate for pyridine in Knoevenagel condensation of aromatic aldehydes and malonic acid. New Journal of Chemistry 40:6, pages 4962-4968.
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Ying Zang, Ting Jiang, Ying Cong, Zhaojuan Zheng & Jia Ouyang. (2015) Molecular Characterization of a Recombinant Zea mays Phenylalanine Ammonia-Lyase (ZmPAL2) and Its Application in trans-Cinnamic Acid Production from l-Phenylalanine. Applied Biochemistry and Biotechnology 176:3, pages 924-937.
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Yana Sakhno, Maryna Murlykina, Alisa Morozova, Anton Kozyrev & Valentin Chebanov. (2015) Heterocyclization Reactions of Pyruvic Acids and Aminoazoles with Controlled Chemoselectivity. French-Ukrainian Journal of Chemistry 3:2, pages 1-20.
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Balaji V. Rokade & Kandikere Ramaiah Prabhu. (2014) Copper-Catalyzed Decarboxylative Sulfonylation of α,β-Unsaturated Carboxylic Acids. The Journal of Organic Chemistry 79:17, pages 8110-8117.
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Qing-Wei Zhang & Jian-Qi Li. (2012) Synthesis and Biological Evaluation of N-(Aminopyridine) Benzamide Analogues as Histone Deacetylase Inhibitors. Bulletin of the Korean Chemical Society 33:2, pages 535-540.
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Ryan C. Nieuwendaal, Sarah J. Mattler, Marko Bertmer & Sophia E. Hayes. (2011) Single Crystal to Single Crystal Topochemical Photoreactions: Measuring the Degree of Disorder in the [2 + 2] Photodimerization of trans -Cinnamic Acid Using Single-Crystal 13 C NMR Spectroscopy . The Journal of Physical Chemistry B 115:19, pages 5785-5793.
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Evita Balducci, Emanuele Attolino & Maurizio Taddei. (2010) A Stereoselective and Practical Synthesis of ( E )‐α,β‐Unsaturated Ketones from Aldehydes . European Journal of Organic Chemistry 2011:2, pages 311-318.
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Eduardo Bermúdez, Oscar N. Ventura & Patricia Saenz Méndez. (2010) Mechanism of the Organocatalyzed Decarboxylative Knoevenagel−Doebner Reaction. A Theoretical Study. The Journal of Physical Chemistry A 114:50, pages 13086-13092.
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Hardik G. Bhatt & Yadvendra K. Agrawal. (2009) Microwave-irradiated synthesis and antimicrobial activity of 2-phenyl-7-substitutedalkyl/arylaminoquinoline-4-carboxylic acid derivatives. Medicinal Chemistry Research 19:4, pages 392-402.
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Yana I. Sakhno, Sergey M. Desenko, Svetlana V. Shishkina, Oleg. V. Shishkin, Dmytro O. Sysoyev, Ulrich Groth, C. Oliver Kappe & Valentin A. Chebanov. (2008) Multicomponent cyclocondensation reactions of aminoazoles, arylpyruvic acids and aldehydes with controlled chemoselectivity. Tetrahedron 64:49, pages 11041-11049.
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Hojatollah Khabazzadeh, Roohollah Moordini Nejad, Hassan Sheibani & Kazem Saidi. (2007) Solvent free microwave assisted Doebner reaction: A green method for the preparation of cinnamic acids. Catalysis Communications 8:9, pages 1411-1413.
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Arun K. Sinha, Anuj Sharma & Bhupendra P. Joshi. (2007) One-pot two-step synthesis of 4-vinylphenols from 4-hydroxy substituted benzaldehydes under microwave irradiation: a new perspective on the classical Knoevenagel–Doebner reaction. Tetrahedron 63:4, pages 960-965.
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Daniel G. Vassão, David R. Gang, Takao Koeduka, Brenda Jackson, Eran Pichersky, Laurence B. Davin & Norman G. Lewis. (2006) Chavicol formation in sweet basil (Ocimum basilicum): cleavage of an esterified C9 hydroxyl group with NAD(P)H-dependent reduction. Org. Biomol. Chem. 4:14, pages 2733-2744.
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Rong Ji, Zaixin Chen, Philippe F.-X. Corvini, Andreas Kappler, Andreas Brune, Konrad Haider & Andreas Schäffer. (2005) Synthesis of [13C]- and [14C]-labeled phenolic humus and lignin monomers. Chemosphere 60:9, pages 1169-1181.
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Guibin Ma & Sophia E. Hayes. (2004) Microwave‐enhanced, solvent‐free synthesis of singly and doubly 13 C‐labelled trans ‐cinnamic acid at the α ‐ and β ‐carbon positions . Journal of Labelled Compounds and Radiopharmaceuticals 47:12, pages 895-901.
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Rebecca J. Robbins & Walter F. Schmidt. (2004) Optimized synthesis of four isotopically labeled ( 13 C‐enriched) phenolic acids via a malonic acid condensation . Journal of Labelled Compounds and Radiopharmaceuticals 47:11, pages 797-806.
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Alok Kumar Mitra, Nilay Karchaudhuri & Aparna De. (2019) An Eco-Friendly Regeneration of Aldehydes Exploiting Ammonium Acetate under Microwave Irradiation. Journal of Chemical Research 2004:3, pages 237-239.
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Michael B. Smith. 2003. Compendium of Organic Synthetic Methods. Compendium of Organic Synthetic Methods 483 708 .
Yanqing Peng & Gonghua Song. (2003) Combined microwave and ultrasound accelerated Knoevenagel–Doebner reaction in aqueous media: a green route to 3-aryl acrylic acids. Green Chem. 5:6, pages 704-706.
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Jie Jack LiJie Jack Li. 2003. Name Reactions. Name Reactions 115 116 .
Nilay Karchgaudhuri, Aparna De & Alok Kumar Mitra. (2019) Microwave-Assisted Condensation Reactions Exploiting Hexamethylenetetramine as a Catalyst under Solvent-Free Conditions. Journal of Chemical Research 2002:4, pages 180-183.
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Jie Jack LiJie Jack Li. 2002. Name Reactions. Name Reactions 102 103 .
Pelle Lidström, Jason Tierney, Bernard Wathey & Jacob Westman. (2001) Microwave assisted organic synthesis—a review. Tetrahedron 57:45, pages 9225-9283.
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Alok Kumar Mitra, Aparna De & Nilay Karchaudhuri. (2010) ChemInform Abstract: Application of Microwave Irradiation Techniques for the Syntheses of Cinnamic Acids by Doebner Condensation.. ChemInform 30:22.
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