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Selective Formation of Benzoyl Ureas by Selenium-Catalyzed Oxidative-Reductive Carbonylation of Benzoyl Amide and Aromatic Nitro Compounds

机译:通过硒催化苯甲酰胺和芳族硝基化合物的硒催化氧化羰基化选择性形成苯甲酰脲

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Benzoyl ureas have a wide variety of uses. In particular, certain benzoyl-substituted ureas are effective insecticides. Traditionally, such compounds have been made by reacting an amine with a carbonyl isocyanate or an amide with an isocyanate. These routes proceed with high yields, but involve a relatively large number of steps from commercially-available starting materials, and have the disadvantage of requiring an isocyanate. The most widely used methods at present involve phosgenation of the appropriate amide or amine. Although this process is also efficient and gives high yields, but phosgene is exceedingly toxic, so very special handling precautions are necessary. In recent years, attention has been paid to a very promising non-phosgene process for the synthesis of various benzoyl-substituted ureas, which includes the reacting of an aromatic nitro-compound with a primary or secondary amide and carbon monoxide, in the presence of a catalyst comprising a Group Ⅷ metal from iridium, rhodium, ruthenium, palladium, platinum or vanadium salt and a ligand which is an organo-phosphorus, organo-arsenic, organo-antimony or organo-nitrogen compound having a lone pair of electrons.
机译:苯甲酰脲有各种各样的用途。特别是,某些苯并取代的脲是有效的杀虫剂。传统上,通过使胺与羰基异氰酸酯或具有异氰酸酯的酰胺反应来制备这些化合物。这些路线具有高产量,但涉及来自市售原料的相对大的步骤,并且具有要求异氰酸酯的缺点。目前最广泛使用的方法涉及适当酰胺或胺的磷酸盐。虽然该过程也有效并提供高产率,但光源非常有毒,因此非常特殊的处理预防措施是必要的。近年来,已经注意了对合成各种苯甲酰基取代脲的非常有前途的非光气法,其包括与初级或二次酰胺和一氧化碳的芳香硝基 - 化合物反应包含来自铱,铑,钌,钯,铂或钒盐的α金属的催化剂,以及作为有机磷,有机砷,有机锑或具有孤立电子的有机氮化合物的配体。

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