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Hydrotalcite-quinolinate composites as catalysts in a coupling reaction

机译:水滑石-喹啉酸酯复合物在偶联反应中的催化作用

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摘要

Samples of layered double hydroxides were prepared by a sol–gel procedure. Quinolinate Al(C9H6NO)3 units were added during the synthesis, leading to composite quinolinate hydrotalcite-like compounds. The amount of quinolinate was varied, showing that the number of organic building blocks determines the physicochemical properties of materials, which differ significantly from those commonly reported for hydrotalcites without any quinolinate. The order of layers, specific surface area and coordination of aluminium were the parameters most significantly influenced by the presence of the quinolinate as a part of the brucite-like layers. The composite quinolinate-hydrotalcite materials were tested to catalyse the Kabachnik–Fields reaction.>Graphical abstractAdding of quinolinate Al(C9H6NO)3 to hydrotalcite-like compounds creates disorder in the stack of brucite-like layers, leading to a significant modification of structural, textural and catalytic properties. The presence of quinolinate inhibits the enchainment of octahedral blocks in hydrotalcite but develop specific surface areas as high as 600 m2g−1.
机译:层状双氢氧化物样品是通过溶胶-凝胶法制备的。在合成过程中添加了喹啉酸酯Al(C9H6NO)3单元,生成了复合喹啉酸酯类水滑石化合物。喹啉酸酯的量各不相同,这表明有机结构单元的数量决定了材料的物理化学性质,这与通常报道的不含喹啉酸酯的水滑石的物理化学性质明显不同。层的顺序,比表面积和铝的配位是作为水镁石状层的一部分而存在的喹啉酸盐最显着影响的参数。测试了复合喹啉酸酯-水滑石材料催化Kabachnik-Fields反应。<!-fig ft0-> <!-fig @ position =“ anchor” mode = f4-> <!-fig mode = “锚定” f5-> >图形摘要<!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->添加喹啉酸Al(C9H6NO)类似于水滑石的化合物3在水镁石状层的堆叠中产生无序,导致结构,结构和催化性质的显着改变。喹啉酸盐的存在会抑制水滑石中八面体嵌段的束缚,但会产生高达600 m 2 g -1 的比表面积。

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