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1 reached over the 24 h of the experiment with methanolysis.
2 n: the silyl groups are readily removed upon methanolysis.
3 the methanol was in situ consumed in the PET methanolysis.
4 olymerization, the NPr-GBMP was subjected to methanolysis, 3N hydrochloric acid in methanol for 16h a
8 vides conclusive evidence for the hydrolysis/methanolysis acid-base neutralization pathway, as formul
9 yl group with 2 equiv of 9-BBN-H followed by methanolysis afforded 5-R-4-(9-BBN)-2,5-dihydro-1H-silol
10 ring-opening reaction of the heterocycle by methanolysis, although, under these reaction conditions,
12 of three reactions: CO(2) hydrogenation, PET methanolysis and dimethyl terephthalate (DMT) hydrogenat
13 ZnZrO(x) catalyst was also effective for the methanolysis and hydrogenolysis of C-C bonds (compared t
14 etal-organic framework as a catalyst for the methanolysis and hydrolysis of phosphate-based nerve age
16 hydrogenolysis, N-Boc protection, reduction, methanolysis, and acetate protection gave methyl N,O-dia
19 chelic macromonomers through straightforward methanolysis, and the resulting macromonomers could be e
20 e TSP-binding lipid was purified by alkaline methanolysis, anion exchange chromatography and preparat
22 cetal, a formal [2 + 2] cycloaddition, and a methanolysis cascade to efficiently generate a highly su
24 and colominic acid were used to confirm the methanolysis depolymerization efficiency of the alpha(2
26 ved for all serotypes by the use of a single methanolysis, derivatization, and chromatography procedu
28 lp, NPbeta-Galp, or UDPalpha-Galp, mild acid methanolysis failed to produce any galactofuranoside.
29 Alkenyl-GP was generated by acidic and basic methanolysis from ethanolamine lysoplasmalogen, which wa
32 olysaccharide or conjugate were subjected to methanolysis in 3N hydrochloric acid in methanol followe
35 rings appears to have taken place in 4 upon methanolysis, leading to the corresponding ester and thi
38 tion of methanol at -80 degrees C results in methanolysis of 8-L (L = solvent) to form the linear die
40 lts corroborate earlier suggestions that the methanolysis of acetyl chloride does not proceed through
41 r use as catalysts for the hydroxyl-directed methanolysis of alpha-hydroxy esters in preference to al
42 T Delta S(#), accelerating the nonenzymatic methanolysis of ATP 11-fold at pH 7 and 25 degrees C.
43 changing temperature for 1) the spontaneous methanolysis of ATP and 2) reactions catalyzed by kinase
44 a H(#) and T Delta S(#) for the nonenzymatic methanolysis of ATP(2-), ATP(3-), and ATP(4-) in the abs
48 terification reaction, and in particular the methanolysis of ethyl acetate with sulfuric acid as cata
51 ere dramatically enriched by direct alkaline methanolysis of lipid extracts followed by extraction to
52 gh DFT calculations, we show that asymmetric methanolysis of meso-cyclic anhydrides (AMMA) catalyzed
53 ptor with the second order rate constant for methanolysis of MgATP) ranged between 10(12)- and 10(14)
55 yzes the release of 3 equivalents of H(2) by methanolysis of phenylsilane, with a turnover number of
56 tivity was demonstrated for the solvent-free methanolysis of PLA at mild conditions with full convers
57 ethanol (CH(3)OH) in a dual role for (1) the methanolysis of polyethylene terephthalate (PET) to form
58 istence is further supported by the observed methanolysis of the alpha-1'-O-alkylamidate intermediate
60 , through the quinine- or quinidine-promoted methanolysis of the cyclic anhydride (+/-)-10, leading t
61 mines by reaction with t-BuLi and subsequent methanolysis of the generated sulfinamide derivatives wi
65 ulations indicate that energy differences of methanolysis of the linear versus branched Pd-acyls are
66 functional methods for the in-line dianionic methanolysis of the native (unsubstituted) and thio-subs
68 to disaccharides through microwave-assisted methanolysis or enzymatic digestion for subsequent MALDI
73 of 4 from refluxing methanol results in the methanolysis product 5-(4-methoxymethyl-2,5-dimethylthio
75 esis of dimethyl sulfomycinamate, the acidic methanolysis product of the sulfomycin family of thiopep
80 to a decrease in the rate of the nondirected methanolysis reaction with the ketone-derived catalysts.
81 the kinetics and reaction products of their methanolysis reactions in the presence of Cu(O(3)SCF(3))
82 The key transformation is the base-catalyzed methanolysis-rearrangement of (+/-)-6,7-exo,exo-(isoprop
83 ity for Lewis acid catalysis (regioselective methanolysis ring-opening of styrene oxide), oxidative c
89 ne disaccharides are readily rearmed by mild methanolysis to provide GlcN-IdoA thiophenyl disaccharid
90 jected to base hydrolysis followed by acidic methanolysis to release S- and N-linked fatty acids, res
91 ydrolysis to the hydroxyacid in 99% yield or methanolysis to the hydroxyester in 91% yield, achieving
92 ) (PET) waste to produce monomers, including methanolysis to yield dimethyl terephthalate (DMT) and g
93 (1) underwent a facile (auto) acid-mediated methanolysis to yield seco-shornephine A methyl ester (1
94 involving epoxidation of the O-methyl ether, methanolysis under mildly acidic conditions, and regiose
96 etone and an ester or an aldehyde, undergoes methanolysis with cleavage of one of the two activated c