Oxidative C ? O Cross‐Coupling of 1,3‐Dicarbonyl Compounds and Their Heteroanalogues with N‐Substituted Hydroxamic Acids and N‐Hydroxyimides
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A. Terent’ev | Z. Starikova | V. Timofeev | V. M. Merkulova | A. I. Ilovaisky | I. Krylov | G. Nikishin | V. Merkulova
[1] Shuj Kobayashi,et al. Antimony/N-Hydroxyphthalimide as a Catalyst System for Cross-Dehydrogenative Coupling Reactions under Aerobic Conditions , 2013 .
[2] A. Terent’ev,et al. Generation and cross-coupling of benzyl and phthalimide-N-oxyl radicals in a cerium(IV) ammonium nitrate/N-hydroxyphthalimide/ArCH2R system , 2012 .
[3] Hisashi Yamamoto,et al. Catalytic enantioselective O-nitrosocarbonyl aldol reaction of β-dicarbonyl compounds. , 2012, Journal of the American Chemical Society.
[4] M. Inoue,et al. Radical amination of C(sp3)-H bonds using N-hydroxyphthalimide and dialkyl azodicarboxylate. , 2012, The Journal of organic chemistry.
[5] T. Lu,et al. Phenazopyridine Cocrystal and Salts That Exhibit Enhanced Solubility and Stability , 2012 .
[6] B. Zhang,et al. Metal-free TEMPO-catalyzed oxidative C-C bond formation from Csp3-H bonds using molecular oxygen as the oxidant. , 2012, Chemical communications.
[7] E. Alexanian,et al. Metal-free, aerobic ketooxygenation of alkenes using hydroxamic acids , 2012 .
[8] D. Pal,et al. Hydroxamic acid – A novel molecule for anticancer therapy , 2012, Journal of advanced pharmaceutical technology & research.
[9] M. Edgar,et al. Intramolecular Carbonyl Nitroso Ene Reaction Catalyzed by Iron(III) Chloride/Hydrogen Peroxide as an Efficient Tool for Direct Allylic Amination , 2011 .
[10] G. Sammis,et al. Photoinduced electron-transfer-promoted redox fragmentation of N-alkoxyphthalimides. , 2011, Organic letters.
[11] B. Bhanage,et al. Carbon Monoxide‐Free One‐Step Synthesis of Isoindole‐1,3‐diones by Cycloaminocarbonylation of o‐Haloarenes Using Formamides , 2011 .
[12] Jianji Wang,et al. Tandem reactions of 1,2-allenic ketones leading to substituted benzenes and α,β-unsaturated nitriles. , 2011, Organic letters.
[13] Jing Xu,et al. Co/Mn-mediated oxidative cross-coupling of indoles with β-keto esters via dioxygen activation: an efficient access to ketonization-olefination of indoles. , 2011, Chemical communications.
[14] E. Alexanian,et al. Metal-free, aerobic dioxygenation of alkenes using simple hydroxamic acid derivatives. , 2011, Journal of the American Chemical Society.
[15] E. Alexanian,et al. Metal-free oxyaminations of alkenes using hydroxamic acids. , 2011, Journal of the American Chemical Society.
[16] D. A. Borisov,et al. Selective Synthesis of UnsymmetricalPeroxides: Transition-Metal-Catalyzed Oxidation of Malononitrileand Cyanoacetic Ester Derivatives by tert-Butyl Hydroperoxideat the α-Position , 2011 .
[17] Choukri Ben Mamoun,et al. PG12, a Phospholipid Analog with Potent Antimalarial Activity, Inhibits Plasmodium falciparum CTP:Phosphocholine Cytidylyltransferase Activity* , 2011, The Journal of Biological Chemistry.
[18] J. Read de Alaniz,et al. Copper-catalyzed aerobic oxidation of hydroxamic acids leads to a mild and versatile acylnitroso ene reaction. , 2011, Journal of the American Chemical Society.
[19] Brian S. Bodnar,et al. Hetero‐Diels‐Alder‐Reaktionen von Nitrosocarbonylverbindungen als nützliches Verfahren in der organischen Synthese , 2011 .
[20] Marvin J Miller,et al. The nitrosocarbonyl hetero-Diels-Alder reaction as a useful tool for organic syntheses. , 2011, Angewandte Chemie.
[21] K. Ishihara,et al. In situ generated (hypo)iodite catalysts for the direct α-oxyacylation of carbonyl compounds with carboxylic acids. , 2011, Angewandte Chemie.
[22] Shu-Jing Yu,et al. Design, synthesis and antifungal activities of novel pyrrole alkaloid analogs. , 2011, European journal of medicinal chemistry.
[23] D. Waugh,et al. Utilization of nitrophenylphosphates and oxime-based ligation for the development of nanomolar affinity inhibitors of the Yersinia pestis outer protein H (YopH) phosphatase. , 2011, Journal of medicinal chemistry.
[24] C. Dardonville,et al. Synthesis and antiprotozoal activity of N-alkoxy analogues of the trypanocidal lead compound 4,4'-bis(imidazolinylamino)diphenylamine with improved human blood-brain barrier permeability. , 2011, Journal of medicinal chemistry.
[25] L. Melone,et al. Hydroperoxidation of Tertiary Alkylaromatics Catalyzed By N-Hydroxyphthalimide and Aldehydes under Mild Conditions , 2011 .
[26] Patricia González‐Bulnes,et al. 2-aminohydroxamic acid derivatives as inhibitors of Bacillus cereus phosphatidylcholine preferred phospholipase C PC-PLC(Bc). , 2010, Bioorganic & medicinal chemistry.
[27] Y. Venkateswarlu,et al. Metal-free oxidative C―C bond formation of active methylenic sp3 C―H bonds with benzylic sp3 C―H and allylic sp3 C―H bonds mediated by DDQ , 2010 .
[28] Y. A. Ibrahim,et al. Gas-phase pyrolysis of N-alkoxyphthalimides to functionally substituted aldehydes: kinetic and mechanistic study , 2010 .
[29] L. Gong,et al. Enantioselective oxidative cross-coupling reaction of 3-indolylmethyl C-H bonds with 1,3-dicarbonyls using a chiral Lewis acid-bonded nucleophile to control stereochemistry. , 2010, Angewandte Chemie.
[30] Á. Pintér,et al. Autoxidative Bildung von Kohlenstoff‐Kohlenstoff‐Bindungen aus Kohlenstoff‐Wasserstoff‐Bindungen , 2010 .
[31] M. Klussmann,et al. Autoxidative carbon-carbon bond formation from carbon-hydrogen bonds. , 2010, Angewandte Chemie.
[32] D. A. Borisov,et al. Synthesis of asymmetric peroxides: transition metal (Cu, Fe, Mn, Co) catalyzed peroxidation of beta-dicarbonyl compounds with tert-butyl hydroperoxide. , 2010, The Journal of organic chemistry.
[33] E. Alexanian,et al. Metal-free, aerobic dioxygenation of alkenes using hydroxamic acids. , 2010, Angewandte Chemie.
[34] Choon‐Hong Tan,et al. Organic dye photocatalyzed α-oxyamination through irradiation with visible light , 2010 .
[35] V. Ananikov,et al. Mechanistic insight into organic and catalytic reactions by joint studies using mass spectrometry and NMR spectroscopy , 2010 .
[36] Chao‐Jun Li,et al. Catalytic alkylation of benzylic C–H bonds with 1,3-dicarbonyl compounds utilizing oxygen as terminal oxidant , 2010 .
[37] J. Tian,et al. Various α-Oxygen Functionalizations of β-Dicarbonyl Compounds Mediated by the Hypervalent Iodine(III) Reagent p-Iodotoluene Difluoride with Different Oxygen-Containing Nucleophiles , 2010 .
[38] S. Coseri. Phthalimide‐N‐oxyl (PINO) Radical, a Powerful Catalytic Agent: Its Generation and Versatility Towards Various Organic Substrates , 2009 .
[39] Haijun Li,et al. Iron-catalyzed C-C bond formation by direct functionalization of C-H bonds adjacent to heteroatoms. , 2008, Angewandte Chemie.
[40] Chao‐Jun Li,et al. Functionalizing glycine derivatives by direct C-C bond formation. , 2008, Angewandte Chemie.
[41] C. Galli,et al. Hydrogen abstraction and electron transfer with aminoxyl radicals: synthetic and mechanistic issues. , 2008, Angewandte Chemie.
[42] Osvaldo Lanzalunga,et al. Wasserstoffabstraktion und Elektronentransfer mit Aminoxylradikalen: Synthesen und Mechanismen , 2008 .
[43] Huanrong Li,et al. C-H bond oxidation initiated pummerer- and Knoevenagel-type reactions of benzyl sulfide and 1,3-dicarbonyl compounds. , 2008, Organic letters.
[44] Yueqing Jia,et al. Synthesis and fungicidal activity of macrolactams and macrolactones with an oxime ether side chain. , 2007, Journal of agricultural and food chemistry.
[45] Chao‐Jun Li,et al. Copper catalyzed oxidative alkylation of sp3 C–H bond adjacent to a nitrogen atom using molecular oxygen in water , 2007 .
[46] Chao‐Jun Li,et al. Highly efficient direct alkylation of activated methylene by cycloalkanes , 2007 .
[47] C. Punta,et al. Free radical functionalization of organic compounds catalyzed by N-hydroxyphthalimide. , 2007, Chemical reviews.
[48] Chao‐Jun Li,et al. FeCl2-catalyzed selective C--C bond formation by oxidative activation of a benzylic C--H bond. , 2007, Angewandte Chemie.
[49] J. E. Thomson,et al. Asymmetric synthesis of beta2-amino acids: 2-substituted-3-aminopropanoic acids from N-acryloyl SuperQuat derivatives. , 2007, Organic & biomolecular chemistry.
[50] Xinli Tong,et al. Highly efficient and metal-free oxidation of olefins by molecular oxygen under mild conditions , 2007 .
[51] Jifeng Liu. Rapid Syntheses of Biologically Active Quinazolinone Natural Products Using Microwave Technology , 2007 .
[52] V. Nair,et al. Cerium(IV) ammonium nitrate--a versatile single-electron oxidant. , 2007, Chemical reviews.
[53] S. Silvestre,et al. Allylic and benzylic oxidation reactions with sodium chlorite , 2007 .
[54] S. Sakaguchi,et al. Addition of adamantanes to acetylenic carboxylates catalyzed by N-hydroxyphthalimide (NHPI) , 2006 .
[55] Yan Li,et al. Stereoselective synthesis and antifungal activities of (E)-alpha-(methoxyimino)benzeneacetate derivatives containing 1,3,5-substituted pyrazole ring. , 2006, Journal of agricultural and food chemistry.
[56] Chao‐Jun Li,et al. Highly efficient cross-dehydrogenative-coupling between ethers and active methylene compounds. , 2006, Angewandte Chemie.
[57] Chao‐Jun Li,et al. Catalytic allylic alkylation via the cross-dehydrogenative-coupling reaction between allylic sp3 C-H and methylenic sp3 C-H bonds. , 2006, Journal of the American Chemical Society.
[58] Chao‐Jun Li,et al. Highly Efficient CuBr-Catalyzed Cross-Dehydrogenative Coupling (CDC) between Tetrahydroisoquinolines and Activated Methylene Compounds , 2005 .
[59] W. Przychodzeń. Mechanism of the Reaction of Lawesson’s Reagent with N‐Alkylhydroxamic Acids , 2005 .
[60] A. Studer,et al. Tin-free radical alkoxyamine addition and isomerization reactions by using the persistent radical effect: variation of the alkoxyamine structure. , 2005, Chemistry.
[61] E. Essassi,et al. Synthesis and 1,3-Dipolar Cycloaddition Reactions of New Pyrazolo[1,5,4-ef][1,5]bezodiazepines , 2004 .
[62] B. Saha,et al. Kinetic study of the phthalimide N-oxyl radical in acetic acid. Hydrogen abstraction from substituted toluenes, benzaldehydes, and benzyl alcohols. , 2003, The Journal of organic chemistry.
[63] E. Pinard,et al. 1-Benzyloxy-4,5-dihydro-1H-imidazol-2-yl-amines, a novel class of NR1/2B subtype selective NMDA receptor antagonists. , 2003, Bioorganic & medicinal chemistry letters.
[64] W. Adam,et al. The nitroso ene reaction: a regioselective and stereoselective allylic nitrogen functionalization of mechanistic delight and synthetic potential. , 2003, Chemical reviews.
[65] J. Christoffers,et al. Preparation of Acyloins by Cerium‐Catalyzed, Direct Hydroxylation of β‐Dicarbonyl Compounds with Molecular Oxygen , 2003 .
[66] M. Lucarini,et al. Hydroxylamines as oxidation catalysts: thermochemical and kinetic studies. , 2003, The Journal of organic chemistry.
[67] M. Takayama,et al. Anti-inflammatory and anti-allergic activities of hydroxylamine and related compounds. , 2002, Biological & pharmaceutical bulletin.
[68] David A. Price,et al. High throughput synthesis of functionalised 1,3-diones and subsequent heterocycle formation , 2002 .
[69] S. Sakaguchi,et al. An efficient nitration of light alkanes and the alkyl side-chain of aromatic compounds with nitrogen dioxide and nitric acid catalyzed by N-hydroxyphthalimide. , 2002, The Journal of organic chemistry.
[70] S. Sakaguchi,et al. Radical addition of ethers to alkenes under dioxygen catalyzed by N-hydroxyphthalimide (NHPI)/Co(OAc)2 , 2002 .
[71] U. Jahn,et al. Lithium Malonate Enolates as Precursors for Radical Reactions − Convenient Induction of Radical Cyclizations with either Radical or Cationic Termination , 2001 .
[72] S. Sakaguchi,et al. Catalytic oxyalkylation of alkenes with alkanes and molecular oxygen via a radical process using N-hydroxyphthalimide. , 2001, The Journal of organic chemistry.
[73] Yoshino,et al. Efficient oxidation of alcohols to carbonyl compounds with molecular oxygen catalyzed by N-hydroxyphthalimide combined with a Co species , 2000, The Journal of organic chemistry.
[74] B. Berger. Antimalarial Activities of Aminooxy Compounds , 2000, Antimicrobial Agents and Chemotherapy.
[75] P. Rangachari,et al. Probing the "active site" of diamine oxidase: structure-activity relations for histamine potentiation by O-alkylhydroxylamines on colonic epithelium. , 1999, The Journal of pharmacology and experimental therapeutics.
[76] Robert D. Miller,et al. Development of a new class of rate-accelerating additives for nitroxide-mediated ‘living’ free radical polymerization , 1997 .
[77] Kak‐Shan Shia,et al. A convenient new procedure for the construction of highly substituted acetates. Reductive alkylation of α-cyano esters , 1997 .
[78] Y. Yoshino,et al. Catalytic Oxidation of Alkylbenzenes with Molecular Oxygen under Normal Pressure and Temperature by N-Hydroxyphthalimide Combined with Co(OAc)2 , 1997 .
[79] R. Moriarty,et al. New Organohypervalent Iodine Reagents for α-Methylphosphonylations and α-Diphenyl- and α-Dimethylphosphinylations , 1997 .
[80] S. Seligman,et al. N-tritioacetoxyphthalimide: A new high specific activity tritioacetylating reagent , 1996 .
[81] S. Sakaguchi,et al. Alkane Oxidation with Molecular Oxygen Using a New Efficient Catalytic System: N-Hydroxyphthalimide (NHPI) Combined with Co(acac)(n)() (n = 2 or 3). , 1996, The Journal of organic chemistry.
[82] B. Snider. Manganese(III)-Based Oxidative Free-Radical Cyclizations. , 1996, Chemical reviews.
[83] J. Iqbal,et al. Cobalt (II) acetate promoted oxidative additioh of 1,3-dicarbonyl compounds to alkenes under aerobic conditions , 1991 .
[84] Y. Zhao,et al. Chemistry of aldolate dianions. Effects of .beta.-heteroatom substituents on ketone enolization , 1990 .
[85] C. Jonge. Reactions with stable phenoxyl radicals , 1986 .
[86] A. L. Crumbliss,et al. Temperature-dependent acid dissociation constants (K/sub a/,. delta. H/sub a/,. delta. S/sub a/) for a series of nitrogen-substituted hydroxamic acids in aqueous solution , 1982 .
[87] T. Ho. Ceric Ion Oxidation in Organic Chemistry , 1973 .
[88] J. F. Douglas,et al. Metabolic Fate of N-γ-Phenylpropyl-N-benzyloxy Acetamide (W-1372) in Rats, Dogs, and Monkeys , 1970 .
[89] J. Bloomfield. Notes-Alkylation Reactions in Dimethyl Sulfoxide , 1961 .
[90] N. Albertson. Piperidines and Azabicyclo Compounds. I. Via Michael Condensations , 1950 .
[91] W. Renfrow,et al. A study of alternate methods for the alkylation of aceto-acetic esters. , 1946, Journal of the American Chemical Society.
[92] Lt,et al. Facile and Efficient Method for alpha-Monobromination of Dicarbonyl Compounds with N-Bromosuccinimide , 2011 .
[93] S. Sakaguchi,et al. Oxygenation of alkynes to α,β-acetylenic ketones with dioxygen catalyzed by N-hydroxyphthalimide combined with a transition metal , 1998 .
[94] J. Einhorn,et al. Oxidation of organic substrates by molecular oxygen mediated by N-hydroxyphthalimide (NHPI) and acetaldehyde , 1997 .
[95] M. Ward,et al. Syntheses of 4-benzyl-3,5-dimethylpyrazolylborato complexes of molybdenum and tungsten nitrosyls: molecular structure of [Mo(CO)2(NO){HB(3,5-Me2-4-PhCH2C3N2)3}], a complex with an ‘inverted’ bowl-like structure , 1994 .
[96] J. Iqbal,et al. Stereoselective synthesis of substituted tetrahydrofurans - identification and analysis by proton NMR and MNDO, MM2 calculations , 1991 .
[97] Y. Kimata,et al. Epoxidation catalysed by MnIIITPPCl using dioxygen activated by a system containing N-hydroxyphthalimide and styrene, 2-norbornene or indene , 1989 .
[98] J. Iqbal,et al. Cobalt(II) acetate promoted addition of acetoacetate to terminal olefins: A highly stereoselective synthesis of 5-alkyl-2-hydroxy 2 methyl-3-methoxycarbonyl tetrahydrofurans , 1989 .
[99] R. Moriarty. Hypervalent iodine oxidation: a-Functionalization of -dicarbonyl compounds using iodosobenzene , 1988 .
[100] G. Koser,et al. Direct .alpha.-mesyloxylation of ketones and .beta.-dicarbonyl compounds with [hydroxy(mesyloxy)iodo]benzene , 1988 .
[101] A. R. Forrester,et al. Mode of action of carcinogenic amines. Part I. Oxidation of N-arylhydroxamic acids , 1970 .
[102] H. Lemaire,et al. Intermediaires radicalaires dans les oxydations de derives azotes par le tetraacetate de plomb , 1964 .