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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 31, 2001 - Issue 21
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Original Articles

MICROWAVE IRRADIATION IN ORGANOPHOSPHORUS CHEMISTRY. III. MODERATE SCALE SYNTHESIS OF REAGENTS FOR OLEFIN FORMATION

Pages 3377-3382 | Received 21 Jan 2001, Published online: 20 Aug 2006

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Nadia Gruber, MaríaC. Mollo, Mariana Zani & LilianaR. Orelli. (2012) Microwave-Enhanced Synthesis of Phosphonoacetamides. Synthetic Communications 42:5, pages 738-746.
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Edgar González-Juárez, Karen Valadez-Villalobos, Diana F. Garcia-Gutierrez, Domingo I. Garcia-Gutierrez, Arian Espinosa Roa & Eduardo Sanchez. (2020) Study on photovoltaic stability and performance by incorporating tetrabutyl phosphonium iodide into the active layer of a perovskite type photovoltaic cell. RSC Advances 10:52, pages 31575-31585.
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Samir F. de A. Cavalcante, Alessandro B. C. Simas & Kamil Kuča. (2019) Nerve Agents’ Surrogates: Invaluable Tools for Development of Acetylcholinesterase Reactivators. Current Organic Chemistry 23:14, pages 1539-1559.
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Viktor Iaroshenko. 2019. Organophosphorus Chemistry. Organophosphorus Chemistry 59 111 .
Nonglin Zhou, Xiaona Shao, Shirong Wang, Yin Xiao & Xianggao Li. (2017) Two trans-1-(9-anthryl)-2-phenylethene derivatives as blue-green emitting materials for highly bright organic light-emitting diodes application. Organic Electronics 50, pages 228-238.
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Nasser Iranpoor, Habib Firouzabadi, Khashayar Rajabi Moghadam & Elham Etemadi-Davan. (2015) Triphenylphosphine/2,3-Dichloro-5,6-dicyanobenzoquinone (PPh 3 /DDQ) System for Conversion of Alcohols and Thiols into Trialkyl Phosphonates . Asian Journal of Organic Chemistry 4:11, pages 1289-1293.
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Barbara Bachowska, Julia Kazmierczak-Baranska, Marcin Cieslak, Barbara Nawrot, Dorota Szczęsna, Joanna Skalik & Piotr Bałczewski. (2012) High Cytotoxic Activity of Phosphonium Salts and Their Complementary Selectivity towards HeLa and K562 Cancer Cells: Identification of Tri- n -butyl- n -hexadecylphosphonium bromide as a Highly Potent Anti-HeLa Phosphonium Salt . ChemistryOpen 1:1, pages 33-38.
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Sayyed Mostafa Habibi-Khorassani, Malek Taher Maghsoodlou, Ali Ebrahimi, Reza Heydari, Nourollah Hazeri, Mohammad Amin Kazemian, Mahmoud Nassiri, Belghais Adrom & Mohammad Zakarianejad. (2010) Theoretical study and synthesis of the reaction between triphenylphosphine, dialkyl acetylenedicarboxylates and 2-aminobenzimidazole, 2-hydroxy-3-nitropyridine or 1,2,3,4-tetrahydrocarbazole. Collection of Czechoslovak Chemical Communications 75:8, pages 785-805.
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Nourollah Hazeri, Malek Taher Maghsoodlou, Sayyed Mostafa Habibi Khorassani, Mahmoud Nassiri & Zahra Afarini. (2008) Study of reaction between triphenylphosphine and activated acetylenic esters in the presence of benzanilide and some its derivatives. Journal of Chemical Research 2008:2, pages 97-100.
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M. Antonia Herrero, Jennifer M. Kremsner & C. Oliver Kappe. (2007) Nonthermal Microwave Effects Revisited:  On the Importance of Internal Temperature Monitoring and Agitation in Microwave Chemistry. The Journal of Organic Chemistry 73:1, pages 36-47.
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Sven Gester, Jens Pietzsch & Frank R. Wuest. (2007) Synthesis of 18 F‐labelled stilbenes from 4‐[ 18 F]fluorobenz‐aldehyde using the Horner–Wadsworth–Emmons reaction . Journal of Labelled Compounds and Radiopharmaceuticals 50:2, pages 105-113.
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Rosa E. Ramírez, Luis C. Torres-González & Eduardo M. Sánchez. (2007) Electrochemical Aspects of Asymmetric Phosphonium Ionic Liquids. Journal of The Electrochemical Society 154:2, pages B229.
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E.V. Matveeva, I.L. Odinets, V.A. Kozlov, A.S. Shaplov & T.A. Mastryukova. (2006) Ionic-liquid-promoted Michaelis–Arbuzov rearrangement. Tetrahedron Letters 47:43, pages 7645-7648.
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Danielle J. Vugts, Manoe M. Koningstein, Rob F. Schmitz, Frans J. J. de Kanter, Marinus B. Groen & Romano V. A. Orru. (2006) Multicomponent Synthesis of Dihydropyrimidines and Thiazines. Chemistry – A European Journal 12:27, pages 7178-7189.
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Anthony D. Piscopio & Sagar Shakya. 2001. Encyclopedia of Reagents for Organic Synthesis. Encyclopedia of Reagents for Organic Synthesis.
Ján Cvengros, Stefan Toma, Sylvain Marque & André Loupy. (2004) Synthesis of phosphonium salts under microwave activation Leaving group and phosphine substituents effects. Canadian Journal of Chemistry 82:9, pages 1365-1371.
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James J. Kiddle. (2010) ChemInform Abstract: Microwave Irradiation in Organophosphorus Chemistry. Part 3. Moderate Scale Synthesis of Reagents for Olefin Formation.. ChemInform 33:3.
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