Letteratura scientifica selezionata sul tema "Carbamoyl radicals"
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Articoli di riviste sul tema "Carbamoyl radicals"
Safiulina, A. M., A. V. Lizunov, E. I. Goryunov, G. V. Bodrin, I. B. Goryunova, T. V. Strelkova, M. S. Grigor'ev, V. K. Brel' e I. G. Tananaev. "Derivatives of (2-carbamoyl ethyl)diphenylphosphine oxides: synthesis and extraction properties with respect to actinides and lanthanides". Журнал неорганической химии 69, n. 1 (15 gennaio 2024): 99–109. http://dx.doi.org/10.31857/s0044457x24010124.
Testo completoRaviola, Carlotta, Stefano Protti, Davide Ravelli e Maurizio Fagnoni. "Photogenerated acyl/alkoxycarbonyl/carbamoyl radicals for sustainable synthesis". Green Chemistry 21, n. 4 (2019): 748–64. http://dx.doi.org/10.1039/c8gc03810d.
Testo completoXie, Long-Yong, Sha Peng, Li-Hua Yang e Xiao-Wen Liu. "Metal-Free Synthesis of Carbamoylated Chroman-4-Ones via Cascade Radical Annulation of 2-(Allyloxy)arylaldehydes with Oxamic Acids". Molecules 27, n. 20 (19 ottobre 2022): 7049. http://dx.doi.org/10.3390/molecules27207049.
Testo completode Pedro Beato, Eduardo, Daniele Mazzarella, Matteo Balletti e Paolo Melchiorre. "Photochemical generation of acyl and carbamoyl radicals using a nucleophilic organic catalyst: applications and mechanism thereof". Chemical Science 11, n. 24 (2020): 6312–24. http://dx.doi.org/10.1039/d0sc02313b.
Testo completoOsmanoğlua, Şemsettin, Murat Aydın e M. Halim Başkana. "EPR of Gamma-irradiated L-Glutamine Hydrochloride and N-Carbamoyl-L-glutamic Acid". Zeitschrift für Naturforschung A 60, n. 7 (1 luglio 2005): 549–53. http://dx.doi.org/10.1515/zna-2005-0715.
Testo completoRigby, James H., Diana M. Danca e John H. Horner. "Carbamoyl radicals from Se-phenylselenocarbamates: Intramolecular additions to alkenes". Tetrahedron Letters 39, n. 46 (novembre 1998): 8413–16. http://dx.doi.org/10.1016/s0040-4039(98)01830-9.
Testo completoSong, Liyan, Xinqiang Fang, Zijia Wang, Kun Liu e Chaozhong Li. "Stereoselectivity of 6-Exo Cyclization of α-Carbamoyl Radicals". Journal of Organic Chemistry 81, n. 6 (7 marzo 2016): 2442–50. http://dx.doi.org/10.1021/acs.joc.6b00008.
Testo completoSong, Liyan, Kun Liu e Chaozhong Li. "Efficient and Regioselective 9-EndoCyclization of α-Carbamoyl Radicals". Organic Letters 13, n. 13 (luglio 2011): 3434–37. http://dx.doi.org/10.1021/ol201180g.
Testo completoMinisci, Francesco, Fausta Coppa e Francesca Fontana. "Reactivity of carbamoyl radicals: the first general and convenient free-radical synthesis of isocyanates". Journal of the Chemical Society, Chemical Communications, n. 6 (1994): 679. http://dx.doi.org/10.1039/c39940000679.
Testo completoKoshiishi, Ichiro, Kazunori Tsuchida, Tokuko Takajo e Makiko Komatsu. "Radical scavenger can scavenge lipid allyl radicals complexed with lipoxygenase at lower oxygen content". Biochemical Journal 395, n. 2 (28 marzo 2006): 303–9. http://dx.doi.org/10.1042/bj20051595.
Testo completoTesi sul tema "Carbamoyl radicals"
Badufle, Margaux. "Nouvelle méthode pour la synthèse d'acides N-aryloxamiques et applications". Electronic Thesis or Diss., Bordeaux, 2024. http://www.theses.fr/2024BORD0365.
Testo completoThis manuscript describes a new process for the synthesis of aromatic oxamic acids and their use as carbamoyl radical precursors, aiming to promote a greener and safer chemistry of isocyanates. The first step of this synthesis consists in an Ullmann-Goldberg cross-coupling reaction between an aryl iodide and a primary oxamate. Its optimization highlighted the significant influence of the oxamate substituent on the reaction yield, and the different modes of catalyst deactivation. A large number of aromatic oxamates were synthesized, and several bis(oxamates) were obtained, expanding the potential use of this method for polymer synthesis. Subsequently, some of these oxamates were deprotected under acidic conditions to obtain corresponding oxamic acids. Through oxidative decarboxylation under thermal or photocatalytic conditions, the latter were finally used as carbamoyl radical precursors for two applications : the in situ generation of isocyanates through their oxidation for urethanes synthesis, and their addition to imines for the synthesis of α-aminoacid amides
Daoust, Benoit. "Réactivité des radicaux amidyle, imidyle et carbamyle vis-à-vis des oléfines". Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1997. http://www.collectionscanada.ca/obj/s4/f2/dsk3/ftp04/nq26378.pdf.
Testo completoDaoust, Benoit. "Réactivité des radicaux amidyle, imidyle et carbamyle vis-à-vis des oléfines". Sherbrooke : Université de Sherbrooke, 1997.
Cerca il testo completoCarrière, Anne. "Cyclisations tandem de radicaux alpha-alcoxycarbonyle, alpha-carbamoyle et alpha-carbonyle : application à la synthèse de composés bicycliques". Aix-Marseille 3, 1994. http://www.theses.fr/1994AIX30084.
Testo completoPotin-Gautier, Martine. "Photoamidation d'olefines fluorees, en milieu homogene et en milieux microemulsions non aqueux". Toulouse 3, 1987. http://www.theses.fr/1987TOU30011.
Testo completoChan, Chien-Ching, e 詹前慶. "Substituent and Solvent Effects on Keto-Enol Tautomerism of Acetyl, Carbamoyl Derivatives, and Their Radical Cations". Thesis, 1999. http://ndltd.ncl.edu.tw/handle/41560203078684144988.
Testo completo國立清華大學
化學系
87
Abstract The results of DFT study of the substituent effects on molecular structures, relative stabilities, and mechanisms of intramolecular proton transfer in isolated acetyl and carbamoyl drivatives, for both neutral molecules and their radical cations, are reported. The reaction in the presence of one and two water molecules is also investigated. Furthermore, the effect of bulk water is considered for the system with two water molecules using the PCM continuum models. All of geometries of the local minima and transition states were optimized without symmetry restrictions at the B3YLP level of theory with D95++(d,p) basis sets and were verified by second derivative calculations. The DFT theory predicts the substituents with π-donating ability tend to reduce the energy barriers of enolization and ketonization in both drivatives and their radical cations. The relative stabilities of acetyl drivative tautomers exhibit that enolization is endothermic in the neutral molecules but exothermic in the radical cations. However, it shows that only endothermic process can be observed in carbamoyl drivative. The influence of water molecules largely reduce the barrier of the proton transfer by about 30 kcal/mol in striking contrast to the minor changes in the relative stability of keto and enol forms. In addition, the present of water molecules has the transfer of C-hydrogen or N-hydrogen onto the water-oxygen advance than the transfer of the hydrogen from this water to the oxygen of the acetaldehyde or formamide.
Capitoli di libri sul tema "Carbamoyl radicals"
"The Chemical Logic for Major Reaction Types". In Natural Product Biosynthesis, 22–46. The Royal Society of Chemistry, 2022. http://dx.doi.org/10.1039/bk9781839165641-00022.
Testo completoSacchelli, Bruce A. L., Mariane Fantinel, Bianca C. Rocha e Leandro H. Andrade. "FORMAMIDA E RADICAL CARBAMOÍLA: UMA RELAÇÃO SINTÉTICA RELEVANTE PARA A CONSTRUÇÃO DE MOLÉCULAS FUNCIONALIZADAS". In Química Orgânica Sintética: Brasil 2022, 385–96. E-papers Serviços Editoriais, 2022. http://dx.doi.org/10.48207/9786587065472-34.
Testo completo