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A novel two-step synthesis of isonitrosoacetanilides [2-(hydroxyimino)-N-phenylacetamides] has been developed, involving the initial acylation of aniline derivatives with 2,2-diacetoxyacetyl chloride, followed by reaction with hydroxylamine hydrochloride. The method works equally well with a variety of different aniline derivatives, including those with poor aqueous solubility and those containing electron rich ortho-substituents, neither of which react well under traditional conditions.  相似文献   
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The photodegradation of films (2 × 10?4 cm thick) of poly(vinyl-acetophenone) [poly(4-acetylstyrene)] exposed to 254 nm radiation under high vacuum at 25 ± 1°C was studied. The principal gaseous product was H2, but CH4, C2H6, and smaller amounts of acetaldehyde and CO were also formed. The photochemistry more closely resembles that of other substituted styrene polymers than that occuring on the long wave (λ > 300 nm) irradiation of the polymer in that the principal initial processes involve fissions of bonds in the β-position to the phenyl chromophores. Studies of a deuterated analogue (D3 acetyl) indicate that H-abstractions occur from the polymer and also that fission of C? H bonds in the acetyl group does not occur. The polymer undergoes rapid cross linking. Mechanisms of the various primary and secondary processes are discussed.  相似文献   
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The anaerobic photochemistry of a number of plausible lignin model compounds (i.e. I: 3,4-Dimethoxy-α-(2-methoxyphenoxy)-β-hydroxypropiophenone;II: 1-(3,4-Dimethoxyphenyl)-2-(2-methoxyphenoxy)-propan-1,3-diol;Pol A: Poly(4-methoxyacrylophenone);Pol B: Poly(3,4-dimethoxyacrylophenone);St 1: 3,5-Dimethoxy-4-hydroxystilbene; andSt 2: 3,5,3′,5′-Tetramethoxy-4-hydroxystilbene) was studied, thin films of these materials being exposed to long-wave (λ≥300 nm) radiation under high vacuum conditions (10?6 torr). In all cases, the only low molecular weight products formed were methane and ethane, and quantum yields were estimated for these reactions. All materials underwent colouration (yellow) and a number of changes were also observed in both the absorbing and emitting characteristics. The colouration was attributed to the presence ofo-quinones which were formed (by further photolysis) from the phenoxy radicals, which were, in turn, produced by O?CH3 fission, the resulting methyl radicals being the precursors of methane and ethane. The stilbenes were in all cases much more reactive (by a factor of about 100); however, they also absorbed higher intensities of radiation in the 300<λ<350 nm region on account of the greater extent of red-shifting of the longest-wave π-π′ aromatic transitions. Gel permeation data indicate the formation of products of cyclization and isomerization of stilbenes and the dimerization of phenoxy radicals while new absorbances in the infrared and13C NMR confirm the presence ofo-quinones in all the models.  相似文献   
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The photochemistry of α-terthienyl (αT) and its mono- and dodo derivatives has been examined using nanosecond laser Hash photolysis techniques. The triplet states of these intermediates have been characterized, and show strong triplet-triplet absorptions with maxima in the 450 to 490 nm region. The triplet lifetimes are normally reduced by efficient triplet-triplet annihilation and self-quenching both of which approach diffusion control. Triplet lifetimes in methanol obtained by extrapolation to zero laser dose and zero concentration are 30, 12.5 and 9.4 μs for αT and its mono- and dodo derivatives, respectively; the effect of iodo substitution on the lifetimes is attributed to heavy atom effects. The triplet states are efficiently quenched by oxygen and the electron acceptor methyl viologen, while amines tire very poor triplet quenchers. The iodo derivatives are photolabile. undergoing C-I bond cleavage from the singlet state, a process that was studied in benzene solvent, where the complex between iodine atoms and benzene can be readily characterized. Modification of αT by replacement of the central thiophene ring by an aromatic ring (i.e. DTB) causes drastic changes in the triplet and singlet state kinetic and spectroscopic characteristics.  相似文献   
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