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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >An efficient copper-catalyzed synthesis of symmetrical bis(N-arylbenzamide) selenides and their conversion to hypervalent spirodiazaselenuranes and hydroxy congeners
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An efficient copper-catalyzed synthesis of symmetrical bis(N-arylbenzamide) selenides and their conversion to hypervalent spirodiazaselenuranes and hydroxy congeners

机译:有效的铜催化合成对称双(N-芳基苯甲酸盐)硒化物及其转化为高效螺二胞嘧啶和羟基同源物

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摘要

A copper catalyzed efficient synthetic method has been developed to access bis(N-arylbenzamide) selenides from 2-halo-N-arylbenzamide substrates and disodium selenide in HMPA at 110 degrees C. The developed protocol tolerates substituents in both N-aryl and benzamide rings of the 2-halobenzamide substrates and provides an array of bis(N-arylbenzamide) selenides in practical yields. The resulting selenides were transformed into hypervalent spirodiazaselenuranes by oxidation using aqueous hydrogen peroxide. (N-(1-Naphthyl)) spirodiazaselenurane is also structurally characterized by a single crystal X-ray study. Hydroxy-substituted spiroselenuranes have been prepared by careful demethylation of methoxy-substituted selenides followed by oxidation by hydrogen peroxide. Antioxidant properties for the decomposition of hydrogen peroxide and for the deactivation of radicals of hydroxy-substituted spiroselenuranes have been studied by the thiol assay and 2,2-diphenyl-1-picrylhydrazyl (DPPH) assay. Both hydroxy-substituted spiroselenuranes exhibit dual mimic functions of glutathione peroxidase (GPx) selenoenzyme and -tocopherol for decomposition of hydrogen peroxide and deactivation of radicals, respectively.
机译:已经开发了一种铜催化的有效合成方法,用于在110℃下从2-卤 - 正芳基苯甲酰胺基材和硒化醇中的硒化醇和硒化二硫化硒酰化的铜催化合成方法。发育方案耐受N-芳基和苯甲酰胺环中的取代基在2-卤苯甲酰胺基材上,并以实际收率提供双(N-芳基苯甲酸盐)硒化糖苷阵列。通过使用过氧化氢水溶液氧化将所得硒化物转化为高效螺二唑烯烃。 (N-(1-萘基))螺二胞嘧啶脲醛也通过单晶X射线研究进行了结构特征。通过仔细的甲氧基取代的硒化硒化合物,然后通过过氧化氢氧化来制备羟基取代的螺丝脲。通过硫醇测定和2,2-二苯基-1-富牛(DPPH)测定,研究了过氧化氢分解和用于羟基取代的螺蛋白基团的自由基的去激活的抗氧化性能。羟基取代的螺苯乙烯脲均显示出谷胱甘肽过氧化物酶(GPX)硒酶和-Tocopherol的双模模拟功能,分别用于分解过氧化氢和自由基的失活。

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