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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 15, 1985 - Issue 12
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Original Articles

Photorearrangement of Aryl Esters in Micellar Medium

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Pages 1113-1121 | Published online: 19 Dec 2006

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Read on this site (3)

Wan‐mei Li, Hu‐qin Lai, Zhong‐hua Ge, Cheng‐rong Ding & Ying Zhou. (2007) Solvent Affected Facile Synthesis of Hydroxynaphthyl Ketones: Lewis Acids Promoted Friedel–Crafts and Demethylation Reaction. Synthetic Communications 37:10, pages 1595-1601.
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Robert Martin. (1992) USES OF THE FRIES REARRANGEMENT FOR THE PREPARATION OF HYDROXYARYLKETONES. A REVIEW. Organic Preparations and Procedures International 24:4, pages 369-435.
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Articles from other publishers (11)

Gastón Siano, Stefano Crespi, Mariella Mella & Sergio M. Bonesi. (2019) Selectivity in the Photo-Fries Rearrangement of Some Aryl Benzoates in Green and Sustainable Media. Preparative and Mechanistic Studies. The Journal of Organic Chemistry 84:7, pages 4338-4352.
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Neeta Karjule, Mrityunjay K. Sharma, Jayaraj Nithyanandhan & Amol A. Kulkarni. (2018) Modulation of reactivity of singlet radical pair in continuous flow: Photo-Fries rearrangement. Journal of Photochemistry and Photobiology A: Chemistry 364, pages 316-321.
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Robert MartinRobert Martin. 2011. Aromatic Hydroxyketones: Preparation and Physical Properties. Aromatic Hydroxyketones: Preparation and Physical Properties 3 41 .
Concepción González & Luis Castedo. 2009. PATAI'S Chemistry of Functional Groups. PATAI'S Chemistry of Functional Groups.
Tadashi Mori, Richard G. Weiss & Yoshihisa Inoue. (2004) Mediation of Conformationally Controlled Photodecarboxylations of Chiral and Cyclic Aryl Esters by Substrate Structure, Temperature, Pressure, and Medium Constraints. Journal of the American Chemical Society 126:29, pages 8961-8975.
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Tadashi Mori, Makoto Takamoto, Hideaki Saito, Takahiro Furo, Takehiko Wada & Yoshihisa Inoue. (2004) Remarkable Differences in Photo and Thermal (Acid-catalyzed) Reactivities between ortho - and para -Acylcyclohexadienones as Essential Factors Determining the Overall Efficiency of the Photo-Fries Rearrangement . Chemistry Letters 33:3, pages 256-257.
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Miguel Angel Miranda & Francisco Galindo. 2003. CRC Handbookof Organic Photochemistry and Photobiology, Volumes 1 & 2, Second Edition. CRC Handbookof Organic Photochemistry and Photobiology, Volumes 1 & 2, Second Edition.
Habeeb Shayira Banu, Kasi Pitchumani & Chockalingam Srinivasan. (1999) Effect of cyclodextrin complexation on photo-Fries rearrangement of naphthyl esters. Tetrahedron 55:31, pages 9601-9610.
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Rafael Suau, Gregorio Torres & Maria Valpuesta. (1995) The photo-fries rearrangement of 2,5-disubstituted phenyl acetates. Tetrahedron Letters 36:8, pages 1311-1314.
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John M. Lally & William J. Spillane. (1991) The photochemistry of para-substituted phenylsulphamates—photo-Fries rearrangements. J. Chem. Soc., Perkin Trans. 2:6, pages 803-807.
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A. K. SINGH & S. M. SONAR. (2016) ChemInform Abstract: Photorearrangement of Aryl Esters in Micellar Medium.. Chemischer Informationsdienst 17:4.
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