10 research outputs found

    Efficient Synthesis of Fluorescent Coumarins and Phosphorous-Containing Coumarin-Type Heterocycles via Palladium Catalyzed Cross-Coupling Reactions

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    Quantum-chemical calculations on the spectral properties of some aryl substituted 3- phosphonocoumarins were performed, and the effect of the substituents in the aryl moiety was evaluated. The structures possessing promising fluorescent properties were successfully synthesized via Suzuki and Sonogashira cross-coupling. The synthetic protocol was also applied for the phosphorous chemoisomer of 3-phosphonocoumarin, 1,2-benzoxaphosphorin, and their carboxylate analogues. The optical properties of the arylated and alkynylated products were experimentally determined. The obtained quantum-chemical and experimental results give the possibility for a fine tuning of the optical properties of phosphorous-containing coumarin systems by altering the substituent at its C-6 position

    Regio- and Stereoselective [2+2] Photodimerization of 3-Substituted 2-Alkoxy-2-oxo-2H-1,2-benzoxaphosphorines

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    Diethyl 1,2-benzoxaphosphorine-3-carboxylates 5 undergo a regio- and stereoselective [2+2] photodimerization reaction in methanol solution under the action of sunlight, giving in all cases the corresponding anti head-to-tail dimers 6 and 7. Concerning the stereogenic P atom, the photodimerization is also stereoselective, and the centrosymmetric stereoisomer 6 predominates over the non symmetric P-epimer 7

    Regio- and Stereoselective [2+2] Photodimerization of 3-Substituted 2-Alkoxy-2-oxo-2H-1,2-benzoxaphosphorines

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    Diethyl 1,2-benzoxaphosphorine-3-carboxylates 5 undergo a regio- and stereoselective [2+2] photodimerization reaction in methanol solution under the action of sunlight, giving in all cases the corresponding anti head-to-tail dimers 6 and 7. Concerning the stereogenic P atom, the photodimerization is also stereoselective, and the centrosymmetric stereoisomer 6 predominates over the non symmetric P-epimer 7

    Theoretical and Experimental Local Reactivity Parameters of3‑Substituted Coumarin Derivatives

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    International audienceLocal reactivity descriptors, such as atomic charges, atomic electrostatic potential andatomic Fukui indices were computed for a series of 3-substituted coumarin (2-oxo-2H-1-benzopyran)derivatives, using density functional theory (DFT) and Möller−Plesset methods (MP2). The variationof those properties as a function of the substituents was compared with the variation of the measuredXPS binding energies. The atomic electrostatic potentials and XPS binding energies serves as indicatorsof the electrophilicity of a given center within a molecule, while the atomic Fukui indices describe itsdegree of electronic localization, known as atomic softness. The correlation between those theoreticaland experimental properties allowed us to follow the effect of electron withdrawing substituents on theelectrophilicity of a given atomic center. The Fukui indices provided additional information about thesoftening/hardening of the center of interest due to presence of different substituents to the coumarin system. On the basis ofthese analysis, the 1,2-addition would be favored for 3-acetyl, 3-phosphono, and 7-diethylamino substituents, while 3-carboxyl, 3-ethoxycarbonyl, and 3-nitro substituent would favor 1,4-addition. The substituted coumarins would preferably react with softnucleophiles at position 2 and with hard nucleophiles at position 4

    A New and Efficient Method for the Synthesis of 3,4-Disubstituted Pyrrolidine-2,5-diones

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    A newly found reaction for the synthesis of 3,4-disubstituted 1-hydroxy-pyrrolidine-2,5-diones from 3-substituted coumarins and nitromethane has been elaborated. The reaction involved a simple and convenient experimental procedure. The applicability of the rearrangement reaction is determined
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