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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 34, 2004 - Issue 19
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Original Articles

Highly Regio‐ and Diastereoselective 1,3‐Dipolar Cycloaddition of Nitrile Oxides to 2,4‐Dimethyl‐3H‐1,5‐Benzodiazepines: Synthesis of Bis[1,2,4‐Oxadiazolo][1,5]Benzodiazepine Derivatives

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Pages 3565-3572 | Received 05 Apr 2004, Published online: 10 Jan 2011

Keep up to date with the latest research on this topic with citation updates for this article.

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Wejdane Abdallah, Mansour Znati, Anne Regazzetti, Delphine Dargère, Olivier Laprévote, Hichem Ben Jannet & Rafik Gharbi. (2017) Synthesis of S-mono- and S,O-bis-1,2,3-triazole linked 1,5-benzodiazepine conjugates and evaluation of their cytotoxic, anti-tyrosinase, and anti-cholinesterase activities. Phosphorus, Sulfur, and Silicon and the Related Elements 192:7, pages 835-844.
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Articles from other publishers (19)

Masoume Malmir, Majid M. Heravi, Zahra Yekke-Ghasemi, Satar Saberi & Masoud Mirzaei. (2022) Fabrication of Heterogeneous Zr-containing Polyoxometalate as an Efficient Catalyst for the Synthesis of a Broad Range of 1,5-Benzodiazepine Derivatives. Journal of Molecular Structure, pages 134631.
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Mariana Rocha, Gustavo A. Echeverría, Oscar E. Piro, Jorge J. Jios, Rocío D. I. Molina, Mario E. Arena, Sonia E. Ulic & Diego M. Gil. (2020) Synthesis, Structure, and Biological Assays of Novel Trifluoromethyldiazepine–Metal Complexes. Australian Journal of Chemistry 73:1, pages 49.
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Maria N. Timofeeva, Ekaterina A. Petrova, Elena A. Mel’gunova, Antonio Gil, Miguel A. Vicente & Valentina N. Panchenko. (2018) Synthesis of 1,5-benzodiazepine from 1,2-phenylenediamine and acetone in the presence of catalytic systems based on montmorillonite: effect of the surface acidity. Reaction Kinetics, Mechanisms and Catalysis 127:1, pages 41-52.
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Vera I. Isaeva, Maria N. Timofeeva, Valentina N. Panchenko, Ivan A. Lukoyanov, Vladimir V. Chernyshev, Gennady I. Kapustin, Nikolai A. Davshan & Leonid M. Kustov. (2019) Design of novel catalysts for synthesis of 1,5-benzodiazepines from 1,2-phenylenediamine and ketones: NH2-MIL-101(Al) as integrated structural scaffold for catalytic materials based on calix[4]arenes. Journal of Catalysis 369, pages 60-71.
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Rajasekhar Ponduri, Pramod Kumar & Lakshmana Rao Vadali. (2018) Synthesis and Antimicrobial Activity of New Isoxazolyl Benzo[1, 4] diazepine-5-one Derivatives. ChemistrySelect 3:35, pages 10108-10112.
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Larry Yet. 2018. Privileged Structures in Drug Discovery. Privileged Structures in Drug Discovery 15 58 .
M.N. Timofeeva, V.N. Panchenko, S.A. Prikhod'ko, A.B. Ayupov, Yu.V. Larichev, Nazmul Abedin Khan & Sung Hwa Jhung. (2017) Metal-organic frameworks as efficient catalytic systems for the synthesis of 1,5-benzodiazepines from 1,2-phenylenediamine and ketones. Journal of Catalysis 354, pages 128-137.
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Beatriz González, Raquel Trujillano, Miguel A. Vicente, Antonio Gil, Valentina N. Panchenko, Ekaterina A. Petrova & Maria N. Timofeeva. (2017) Two synthesis approaches of Fe-containing intercalated montmorillonites: Differences as acid catalysts for the synthesis of 1,5-benzodeazepine from 1,2-phenylenediamine and acetone. Applied Clay Science 146, pages 388-396.
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Maria N. Timofeeva, Sergey A. Prikhod’ko, Kristina N. Makarova, Mikhail E. Malyshev, Valentina N. Panchenko, Artem B. Ayupov & Sung Hwa Jhung. (2017) Iron-containing materials as catalysts for the synthesis of 1,5-benzodiazepine from 1,2-phenylenediamine and acetone. Reaction Kinetics, Mechanisms and Catalysis 121:2, pages 689-699.
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Satish M. Ghelani & Yogesh T. Naliapara. (2016) Design, Synthesis, and Characterization of 1, 3-disubstituted-1,4-benzodiazepine Derivatives. Journal of Heterocyclic Chemistry 53:6, pages 1795-1800.
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Mariappan Jeganathan & Kasi Pitchumani. (2014) Solvent-Free Syntheses of 1,5-Benzodiazepines Using HY Zeolite as a Green Solid Acid Catalyst. ACS Sustainable Chemistry & Engineering 2:5, pages 1169-1176.
Crossref
Mercedes Muñoz, Gabriel Sathicq, Gustavo Romanelli, Silvina Hernández, Carmen I. Cabello, Irma L. Botto & Mickael Capron. (2012) Porous modified bentonite as efficient and selective catalyst in the synthesis of 1,5-benzodiazepines. Journal of Porous Materials 20:1, pages 65-73.
Crossref
Shailesh Thakrar, Abhay Bavishi, Ashish Radadiya, Shrey Parekh, Dhairya Bhavsar, Hardevsinh Vala, Nilay Pandya & Anamik Shah. (2013) Microwave-Assisted Rapid Synthesis of Novel 1,5-Benzodiazepine Derivatives as Potent Antimicrobial Agent. Journal of Heterocyclic Chemistry 50:S1, pages E73-E79.
Crossref
Gourhari Maiti, Utpal Kayal, Rajiv Karmakar & Rudraksha N. Bhattacharya. (2012) Terminal alkynes as keto-methyl equivalent toward one pot synthesis of 1,5-benzodiazepine derivatives under catalysis of Hg(OTf)2. Tetrahedron Letters 53:12, pages 1460-1463.
Crossref
Giovanni Romeo & Ugo Chiacchio. 2011. Modern Heterocyclic Chemistry. Modern Heterocyclic Chemistry 1047 1252 .
Chun-Wei Kuo, Chun-Chao Wang, Veerababurao Kavala & Ching-Fa Yao. (2008) Efficient TCT-catalyzed Synthesis of 1,5-Benzodiazepine Derivatives under Mild Conditions. Molecules 13:9, pages 2313-2325.
Crossref
K. Hemming. 2008. Comprehensive Heterocyclic Chemistry III. Comprehensive Heterocyclic Chemistry III 243 314 .
K. Nabih, A. Baouid, A. Hasnaoui & A. Kenz. (2005) Highly Regio‐ and Diastereoselective 1,3‐Dipolar Cycloaddition of Nitrile Oxides to 2,4‐Dimethyl‐3H‐1,5‐benzodiazepines: Synthesis of Bis[1,2,4‐oxadiazolo][1,5]benzodiazepine Derivatives.. ChemInform 36:7.
Crossref
John B. Bremner. 2005. A critical review of the 2004 literature preceded by two chapters on current heterocyclic topics. A critical review of the 2004 literature preceded by two chapters on current heterocyclic topics 389 417 .

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