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1 mo-4,4'-di(hexoxymethyl)-2,2'-bipyridine via oxidative coupling.
2 m the corresponding xanthobilirubic acids by oxidative coupling.
3 raction, which was attributed to its abiotic oxidative coupling.
4 ,5'-tetra-tert-butyl-4,4'-diphenoquinone, by oxidative coupling.
5 e a catalytic cycle involving diene-carbonyl oxidative coupling.
6 accomplished by means of an indole-imidazole oxidative coupling.
7 ysaccharides during maturation by undergoing oxidative coupling.
8                   Consecutive intramolecular oxidative coupling and deprotection gave dictyodendrins
9       Because all of the congeners formed by oxidative coupling and subsequent reactions are also fou
10 hods to build up such chiral backbones (e.g. oxidative couplings and stereoselective Suzuki-Miyaura a
11 ritical role in facilitating alkene-carbonyl oxidative coupling, as isostructural ruthenium(0) comple
12 her advantages over existing decarboxylative oxidative couplings, as stoichiometric transition metals
13 pounds could be generated in vitro by simple oxidative coupling assays involving monolignols and cyst
14 ium (~ 1100 times at 6.7 degrees C) with the oxidative coupling being so fast that the activation of
15                          The success of this oxidative coupling depends on the appropriate choice of
16       The palladium-catalyzed intramolecular oxidative coupling described herein involves a double C(
17 he presence of sequences related to OxyC, an oxidative coupling enzyme found in glycopeptide biosynth
18         A mechanism involving diene-carbonyl oxidative coupling followed by intramolecular carbonyl a
19 group, where the oxidized components undergo oxidative coupling for the formation of theaflavins, the
20 mium(0) complexes, enol carboxylate-carbonyl oxidative coupling forms transient beta-acyloxy-oxametal
21 beta1-40, and Abeta1-42, suggesting that the oxidative coupling is initiated by interaction of H2O2 w
22 trolling site selectivity in the Pd-mediated oxidative coupling of 1,3-disubstituted and 1,2,3-trisub
23   This study of the bromoperoxidase mediated oxidative coupling of 2,4,6-tribromophenol (an abundant
24                   Molecular iodine catalyzed oxidative coupling of 2-aminobenzamides with aryl methyl
25                  Whereas the Cu(II)-mediated oxidative coupling of 2-aminonaphthalenes 7a and 7b resu
26 tion that competes with the enantioselective oxidative coupling of 2-naphthols was revealed, thereby
27 yzed hypervalent iodine [PhI(OTf)2] mediated oxidative coupling of 4-anilinoquinazoline-2-carbonitril
28 rings, have been synthesized by Ru-catalyzed oxidative coupling of a broad range of benzylamines or h
29            The synthesis and electrochemical oxidative coupling of a highly electron-deficient analog
30 clopentadiene intermediate obtained from the oxidative coupling of acetylene is diverted to the produ
31                                              Oxidative coupling of activated aryl groups attached to
32 en identified that enables efficient aerobic oxidative coupling of alcohols and amines to amides.
33                        The Rh(III)-catalyzed oxidative coupling of alkenes with arenes provides a gre
34                                          The oxidative coupling of alkylboronic acids with oxygen nuc
35 dant indole side chain has been modified via oxidative coupling of an additional molecule of alanine,
36 ect method for synthesizing 2-arylindoles is oxidative coupling of an arene with an indole.
37      The aforementioned process involves the oxidative coupling of an enamine intermediate, generated
38                                          The oxidative coupling of arenes and alkenes is an attractiv
39                         Pd-catalyzed aerobic oxidative coupling of arenes provides efficient access t
40 spective for the related palladium-catalyzed oxidative coupling of arenes to form biaryls.
41                     Copper-catalyzed aerobic oxidative coupling of arylboronic acid derivatives and h
42                                          The oxidative coupling of beta-carbonyl imines and allyltrim
43 es the generality and broad potential of the oxidative coupling of bisnucleophiles and isocyanides, f
44                    Histidine residues direct oxidative coupling of boronic acids at the backbone NH o
45                                RNA-templated oxidative coupling of bPNA fragments is found to result
46  the development of Pd catalysts for aerobic oxidative coupling of C-H bonds.
47            Both the Chichibabin protocol and oxidative coupling of carbanions by copper(I) iodide wer
48 cyanides, we have recently developed a novel oxidative coupling of diamines and isocyanides furnishin
49 amine oxidation by laccase alone followed by oxidative coupling of dihydroxyindole.
50 ls in good to excellent yields by the direct oxidative coupling of electron-rich arenes to the alpha-
51                    We report an Ir-catalyzed oxidative coupling of furans with unactivated olefins to
52                                          The oxidative coupling of glutathione (GSH) to PRDX2 cystein
53              In addition, a Pd(II)-catalyzed oxidative coupling of indole-2-caboxylic acid derivative
54  of this synthesis include an intramolecular oxidative coupling of ketone and malonic ester enolates
55  enantioselectivity has been achieved in the oxidative coupling of lithium (n-Bu)(2-pyrrolidinyl)cupr
56                        Here we report on the oxidative coupling of methane by gaseous S2 (SOCM).
57                     A possible mechanism for oxidative coupling of methane over La(2)O(3)(001) involv
58 is composed of lignin that is polymerized by oxidative coupling of monolignols through the action of
59                                It occurs via oxidative coupling of monolignols, which are synthesized
60 model adducts synthesized by electrochemical oxidative coupling of N-acetyldopamine (NADA) quinone an
61 2)Cu] are effective precatalysts for aerobic oxidative coupling of naphthol substrates.
62 lytic reactions (Baeyer-Villiger oxidations, oxidative coupling of naphthols using iron chloride, con
63                                          The oxidative coupling of o-aminophenols or catechols with a
64                     Here, we investigate the oxidative coupling of o-xylene catalyzed by a PdX2/2-flu
65 on effect of Cu(OTf)2 in the C-H/C-H aerobic oxidative coupling of o-xylene.
66 s, including the degradation of polymers and oxidative coupling of phenolic compounds, positioning th
67                                       Direct oxidative coupling of phenols and terminal alkynes was a
68 ribe conditions for the ortho-oxygenation or oxidative coupling of phenols under copper (Cu)-catalyze
69 ls of phenolics are critically important for oxidative coupling of phenoxy radicals to form polymers.
70    The reaction is initiated by a metal-free oxidative coupling of primary alkoxides and diaminopyrim
71          We report here a novel IBX-promoted oxidative coupling of primary amines and its utilization
72 tal-free catalyst in the presence of air for oxidative coupling of primary amines.
73                      The palladium-catalyzed oxidative coupling of pyrido- and benzotriazol-1-yloxyqu
74 enzylidenephthalides via C-H olefination and oxidative coupling of readily available benzoic acids an
75 as been identified that proceeds via aerobic oxidative coupling of terminal alkynes with various nitr
76       ETP 2 was synthesized via a novel homo-oxidative coupling of the aliphatic primary carbons of t
77 m corroborate a catalytic mechanism in which oxidative coupling of the alkyne and imine residues is f
78 cycloaddition (RuAAC) appears to proceed via oxidative coupling of the azide and alkyne reactants to
79                            These result from oxidative coupling of the cysteinyl sulfur atoms that ar
80 t that the reaction pathway involves initial oxidative coupling of the terminal alkyne with the secon
81           5,5'-Biscalix[5]arene, prepared by oxidative coupling of the tetrabenzoyl ester of calix[5]
82 st plausible catalytic cycle is initiated by oxidative coupling of the two allenes, which was found t
83 sistent with a catalytic mechanism involving oxidative coupling of the vinyl azine and imine partners
84 Lignin is a complex polymer derived from the oxidative coupling of three classical monolignols.
85 ess of the method hinged upon the controlled oxidative coupling of unsymmetrical silyl bis-enol ether
86                         Pd-catalyzed aerobic oxidative coupling of vinylboronic acids and electronica
87                                 Furthermore, oxidative couplings of 3,4-dihydro-2H-pyrrole-2-carbonit
88 on selectivity between ortho-oxygenation and oxidative coupling pathways.
89 , the heavy-metal-free characteristic of the oxidative coupling process, and the flexibility to toler
90 able molybdenum sulfide chalcogel through an oxidative coupling process, using (NH4)2MoS4 and iodine.
91 ted to the extracellular matrix where random oxidative coupling produces a complex lignin polymer.
92 al for direct arene/1,2-disubstituted alkene oxidative couplings, providing an efficient route to tri
93 II)-mediated oxidation of phenols results in oxidative coupling rather than in oxygenation, it was re
94 om a kinetic investigation of a Cu-catalyzed oxidative coupling reaction between N-phenyl tetrahydroi
95 ategy has been developed that is based on an oxidative coupling reaction that targets electron-rich a
96 ble stoichiometric oxidant for the catalytic oxidative coupling reaction.
97 omparative mechanistic study of Cu-catalyzed oxidative coupling reactions of N-phenyltetrahydroisoqui
98 e synthesized by a combination of Stille and oxidative coupling reactions.
99 es were prepared as catalysts for asymmetric oxidative coupling reactions.
100 ex 7, a key intermediate in the experimental oxidative coupling scheme by Zhang et al., we describe t
101                  A merged conjugate addition/oxidative coupling sequence that represents an efficient
102      A range of oxidants can be used for the oxidative coupling step, with 1,2-dibromoethane proving
103 nome-free viral capsid carrier, an efficient oxidative coupling strategy has been developed.
104  DNA modifications were carried out using an oxidative coupling strategy, and the DNA strands served
105                   We propose that, after the oxidative coupling, strong p-hydroxybenzyl-polysaccharid
106 orward click/electrophilic addition or click/oxidative coupling tandem procedures.
107                        The typical Heck-type oxidative coupling that occurs when alkenes are used is
108 m of 2,3,4,5-tetrabromopyrrole to facilitate oxidative coupling to 2,4-dibromophenol.
109 III) complex engages the amidating agent via oxidative coupling to form a M(V)-imido intermediate, wh
110 olving ruthenium(0)-mediated allene-aldehyde oxidative coupling to form a transient oxaruthenacycle,
111 a catalytic mechanism involving olefin-dione oxidative coupling to form an oxa-osmacyclopentane, whic
112 ytic cycle involving 1,2-dicarbonyl-acrylate oxidative coupling to form oxaruthenacyclic intermediate
113   Finally, the insertion compounds underwent oxidative coupling to form the desired isoquinoline salt
114 chanism involves consecutive alkyne-carbonyl oxidative couplings to form transient oxaruthanacycles t
115    The chemical dimerization was achieved by oxidative coupling using FeCl(3) in CH(2)Cl(2) at 0 degr
116 lly through the beta-beta (2/6) positions by oxidative coupling using FeCl(3).
117 lowing C-H activation, alkyne insertion, and oxidative coupling were fully characterized, including t
118                                              Oxidative coupling with AgPF(6) of zinc(II)-5,15-bis(4-t
119                      Feruloyl esters undergo oxidative coupling with neighboring phenylpropanoids on
120 ed 1,7,8-positions and their dimerization by oxidative coupling with phenyliodine(III)-bis(trifluoroa
121 available derivatives that undergo efficient oxidative couplings with anilines in the presence of per

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