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首页> 外文期刊>Journal of the Brazilian Chemical Society >Accessing Basic Sites on Modified CoFe2O4 Nanoparticles: Addressing the Selective Oxidation of Benzyl Alcohol and Unraveling the Au:Pd Ratio Effects by XPS
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Accessing Basic Sites on Modified CoFe2O4 Nanoparticles: Addressing the Selective Oxidation of Benzyl Alcohol and Unraveling the Au:Pd Ratio Effects by XPS

机译:在改性CoFe2O4纳米粒子上访问基本位点:解决苄醇的选择性氧化并解开Au:Pd比率效应XPS

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AuPd nanoparticles have gained substantial attention due to their application in selective oxidation of alcohols. However, due to the radical nature of the oxidation of benzyl alcohol, under specific conditions, even without a catalyst, the reaction occurs and affects the selectivity of the system. Therefore, we aimed to develop a catalyst that enables the control of the oxidation leading to higher reaction selectivity. To accomplish this, we have prepared a catalytic support comprised of CoFe2O4 nanoparticles impregnated with Sr(OH)2 that presented a significant control of the reaction selectivity without any metal or external base addition. After the impregnation of AuPd nanoparticles in a specific ratio, the reaction reached a selectivity of 99% for benzaldehyde, in 3.5 h, with a recycle regime of five runs without loss of activity and selectivity. Our results show that the judicious choice of the ratio of the metals prevents the necessity of manipulating the reaction conditions to improve the performance of the system. Additionally, studies under N2 and O2 environments, with or without water, confirmed the role of the O2 in the system. Holding all this information, we propose a possible mechanism for the prepared system.
机译:由于它们在醇的选择性氧化中的应用,AUPD纳米颗粒效应了很大的关注。然而,由于苄醇氧化的自由基性质,在特定条件下,即使没有催化剂,也会发生反应并影响系统的选择性。因此,我们旨在开发一种催化剂,使得能够控制氧化导致更高的反应选择性。为了实现这一点,我们制备了由浸渍有Sr(OH)2的COFE2O4纳米颗粒组成的催化支持,所述SR(OH)2表示没有任何金属或外部基础的反应选择性的显着控制。在以特定比率浸渍AUPD纳米颗粒后,反应达到苯甲醛的选择性> 99%,在3.5小时内,其中循环制度为5次,不会损失活性和选择性。我们的研究结果表明,金属比例的明智选择可防止操纵反应条件以改善系统的性能。另外,在N2和O2环境下的研究,有或没有水,证实了O2在系统中的作用。举行所有这些信息,我们提出了制定的系统可能的机制。

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