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Zur Kenntnis der gemeinsamen Einwirkung von elementarem Selen und gasförmigem Ammoniak bzw. Ethylenimin auf Ketone
Authors:Friedrich Asinger  Maria Karoline Schmitz
Institution:(1) Institut für Technische Chemie und Petrolchemie, Rheinisch-Westfälische Technische Hochschule Aachen, D-5100 Aachen, Bundesrepublik Deutschland
Abstract:Elemental sulfur reacts with ketones and gaseous ammonia at room temperature yielding thiazoline-3 in excellent yields. Under the same conditions elemental selenium does not react at all. Attempts using the known techniques which have been applied in improving the reactivity of slowly reacting ketones in thiazoline-3-synthesis have been unsuccessful (Exp. No. 1–17). The reaction of agr-halogenketones with sodiumhydrogenselenide to synthesize agr-hydroselenoketones gives only the original ketones and selenium in almost quantitative yields (No. 18–23). The same is observed with agr-haloketones and sodium ore magnesium-diselenides (No. 24–45). The explanation of these unexpected results is the strong reducing power of the hydrogenselenide (No. 46–52). Even agr-bromoketones with activated bromine (i.g. by phenyl groups) were reduced by sodiumhydrogensulfide giving red undefinite oils. However, agr-chloroketones give agr-mercaptoketones in excellent yields (No. 53–61). Hydrogenselenide reduces agr-mercaptoketones to sulfur and ketones in the presence of triethylamine (No. 62–67). Also the transformation of agr-selenocyanketones to agr,agrprime-diketodisenides by alkali or the oxidative hydrolysis of selenium-ldquoBUNTErdquo salts does not work and gives elementary selenium only. Studies about the concomitant reaction of elementary selenium and ethylenimine on ketones were continued (No. 68–82).
Keywords:Dihydro-p-selenazine  agr-Haloketones" target="_blank">gif" alt="agr" align="BASELINE" BORDER="0">-Haloketones  Hydrogenselenide reducing Action  agr-Mercaptoketones" target="_blank">gif" alt="agr" align="BASELINE" BORDER="0">-Mercaptoketones
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