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Fluorocarbon Compatibilized Gold-Silica Nanocomposites For Recyclable Regioselective Hydroamination of Alkynes In A Fluorous Biphasic System

机译:氟碳化的金 - 二氧化硅纳米复合材料在流荧光双相系统中的炔烃可再循环区域 - 纳米复合材料

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The synthesis and characterization of the mesoporous silica-supported gold (Au@mSiO2) nanoparticles compatibilized with the outer shelled superhydrophobic fluorous (F) "tails" was described. The concept of fluorous biphasic separation was applied in the recycling of the synthesized fluorous material during hydroamination reactions of various alkynes. In the presence of perfluoromethylcyclohexane and heptane as a biphasic liquid system, the F-Au@mSiO2 was found to be a highly active catalyst for hydroamination of various alkynes with anilines, and a near quantitative yield for an imine product and produced a relatively minimal formation of a corresponding hydrolyzed ketone by-product. If perfluoromethylcyclohexane and heptane was used as a biphasic solvent, hydroamination at a lower reaction temperature can also be realized leading to an improved recyclability and conversion.
机译:描述了用外壳超细杂种荧光(F)“尾”的介孔二氧化硅载体金(Au @ MSIO2)纳米颗粒的合成和表征。在各种alkynes的中水中的加氢反应期间,在合成的氟材料的再循环中应用了流荧光的双相分离的概念。在全氟甲基环己烷和庚烷作为双相液体系统的存在下,发现F-AU @ MSIO2是具有苯胺的各种炔烃的水氨基氨基的高活性催化剂,以及亚胺产物的近定量产率,并产生相对最小的形成相应的水解酮副产物。如果使用全氟甲基环己烷和庚烷作为双相溶剂,则还可以实现较低反应温度下的水醋酰胺,导致可再循环性和转化率提高。

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