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Solvent-free selective epoxidation of cyclooctene using supported gold catalysts: an investigation of catalyst re-use

机译:使用负载型金催化剂的环辛烯无溶剂选择性环氧化:催化剂重复使用的研究

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Selective oxidation is of immense importance in the synthesis of chemical intermediates and the epoxidation of alkenes by the electrophilic addition of oxygen to a carbon-carbon double bond remains one of the most significant challenges in oxidation catalysis. Although molecular oxygen is the most environmentally benign oxidant in many cases, far more reactive forms of oxygen are required to achieve reaction, and this can lead to by-products with a heavy environmental burden with respect to their disposal. We show that gold supported on graphite is a very effective catalyst for the epoxidation of cis-cyclooctene as long as catalytic amounts of a hydroperoxy species are present at the start of the reaction. Using mild solvent-free conditions the hydroperoxy initiator persists in solution for only a few minutes, being initially adsorbed on the catalyst surface. Subsequently, it decomposes to establish a reactive species that can propagate the selective oxidation process we observe. The observation of an induction period may in part be due to the adsorption of the radical initiator blocking surface sites as well as the establishment of the reactive species. We confirm that graphite is the best support and that tert-butyl hydroperoxide is the preferred initiator. We report extensive studies concerning the reusability of the gold/graphite catalyst as catalyst reusability is a key feature of green chemistry. The catalyst is found to be inhibited by the epoxide product but we demonstrate the effect of this is negligible for reused catalysts over a long reaction time.
机译:选择性氧化在化学中间体的合成中具有极其重要的意义,并且通过将氧亲电加成到碳-碳双键上来进行烯烃的环氧化仍然是氧化催化中最重要的挑战之一。尽管在许多情况下分子氧是对环境最无害的氧化剂,但需要更多的反应性形式的氧才能完成反应,这会导致副产物的处置带来沉重的环境负担。我们表明,只要反应开始时存在催化量的氢过氧化物,石墨上负载的金对于顺环环辛烯的环氧化是非常有效的催化剂。在温和的无溶剂条件下,氢过氧化物引发剂在溶液中仅保留几分钟,最初被吸附在催化剂表面。随后,它分解以建立可传播我们观察到的选择性氧化过程的反应性物质。诱导期的观察可能部分归因于自由基引发剂阻断表面位点的吸附以及反应性物质的建立。我们确认石墨是最好的载体,叔丁基氢过氧化物是优选的引发剂。我们报告了有关金/石墨催化剂可重复使用性的广泛研究,因为催化剂可重复使用性是绿色化学的关键特征。发现该催化剂被环氧化物产物抑制,但是我们证明对于长时间使用的催化剂而言,这种影响可忽略不计。

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