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Selective Synthesis of Furfurylamine by Reductive Amination of Furfural over Raney Cobalt

机译:通过糠醛糠醛的还原胺化选择性合成糠胺胺

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摘要

Effect of metal nature on reductive amination was investigated with biomass-based furfural as a typical substrate. Among the tested heterogeneous metal catalysts, cobalt proved to be the most effective metal for the synthesis of the corresponding primary amine. Under a relatively mild reaction condition, 98.9 % yield of furfurylamine was obtained over Raney Co and it can be reused more than eight times without a significant decrease in the catalytic performance. By extensively studying the catalytic pathways and reaction mechanism, it is found that the selectivity to primary amine and secondary amine was governed by the relative rate of hydrogenolysis and hydrogenation of the Schiff base intermediate. The superiority of Raney Co in furfurylamine synthesis can be ascribed to its high efficiency on hydrogenolysis of the Schiff base intermediate and its low performance in the hydrogenation of the Schiff base, carbonyl group and furan ring. Furthermore, ammonia greatly promoted the catalytic hydrogenolysis of the Schiff base intermediate over Raney Co without clear deactivation of the metal active sites.
机译:用基于生物质的糠醛作为典型基质研究了金属性质对还原胺化的影响。在测试的非均相金属催化剂中,钴被证明是合成相应伯胺的最有效的金属。在相对温和的反应条件下,在Raney CO上获得98.9%的糠酰胺,可以重复使用超过八次而不会显着降低催化性能。通过广泛地研究催化途径和反应机制,发现对伯胺和仲胺的选择性受到席克基碱中间体的相对率和氢化的相对速率。 Raney Co在糠醇胺合成中的优越性可以归因于其高效率的Schiff基础中间体的氢化氢解及其低性能在席克碱,羰基和呋喃环的氢化中。此外,氨极大地促进了辛炔碱中间体的催化氢解,而不是清除金属活性位点的透明失活。

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