نتایج جستجو برای: cyclohexene
تعداد نتایج: 865 فیلتر نتایج به سال:
An octylsilane-stabilized colloidal dispersion of 2 nm crystalline gold nanoparticles is highly active and selective for the aerobic oxidations of stilbene and cyclohexene in methylcyclohexane.
Two cell lines, both derived from the C3H mouse and each having different responses (oncogenic and cytotoxic) to polycyclic aromatic hydrocarbon oncogens, were studied with respect to their drug-metabolizing enzymes. The 10T1/2CL8 cells (a C3H mouse embryo fibroblastic cell line) were much more effective in converting 3-methylcholanthrene (3-MC) to 3-MC water-soluble metabolites, 3-MC phenols, ...
Chemoselectivities of five experimentally realised CpRuCl(PPh3 )2 /MeI-catalysed couplings of 7-azabenzo-norbornadienes with selected alkynes were successfully resolved from multiple reaction pathway models. Density functional theory calculations showed the following mechanistic succession to be energetically plausible: (1) CpRuI catalyst activation; (2) formation of crucial metallacyclopentene...
(4S)-4-Benzyl-3-[(4S,5S)-(1-methoxy-5-methylcyclohexen-4- yl)carbonyl]-2-oxazolidinone, C19H23NO4, M(r) = 329.40, monoclinic, P2(1), a = 11.453 (3), b = 7.163 (4), c = 11.929 (2) A, beta = 111.86 (2) degree, V = 908.3 (5) A3, Z = 2, D chi = 1.20 g cm-3, lambda (Mo K alpha) = 0.71073 A, mu = 0.79 cm-1, F(000) = 352, T = 297 K, R = 0.034 for 885 reflections with Fo2 greater than 0. The molecule i...
Ascochyta rabiei (Pass.) Lab. is a highly destructive pathogen of chickpea. In thisstudy, leaf extract Eucalyptus citriodora was assessed against this pathogen. Bioassays withmethanolic (0, 05, 1.0, 1.5, …, 4.0%) revealed the remarkable antifungal potential ofleaf where 69–94% reduction in biomass A. recorded. Chloroform fraction thisextract separated by partitioning separating funnel. Using so...
A thermosensitive nanocatalyst was prepared in the reaction of water-soluble iron(III) porphyrins and thermosensitive polymeric nanospheres with a core-shell structure; its catalytic activity in cyclohexene oxidation by iodosylbenzene was dependent markedly on reaction temperatures in aqueous solution.
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