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The effect of Ce ion substituted OMS-2 nanostructure in catalytic activity for benzene oxidation

机译:Ce离子代替OMS-2的效果纳米结构苯的催化活性氧化

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The nanostructure of Ce doped OMS-2 plays a very important role in its catalytic property. We demonstrate by density functional theory (DFT) calculations that the unique nanostructure of the Ce ion substituted OMS-2 with Mn vacancy in the framework is beneficial for the improvement of catalytic activity, while the nanostructure of the Ce ion substituted OMS-2 without defects are detrimental to the catalytic activity. We establish a novel and facile strategy of synthesizing these unique Ce ion substituted OMS-2 nanostructure with Mn vacancies in the framework by hydrothermal redox reaction between Ce(NO3)3 and KMnO4 with KMnO4/Ce(NO3)3 at a molar ratio of 3:1 at 120 °C. Compared to pure OMS-2, the produced catalyst of Ce ion substituted OMS-2 ultrathin nanorods exhibits an enormous enhancement in the catalytic activity for benzene oxidation, which is evidenced by a significant decrease (△T_(50) = 100 °C, △T_(90) = 129 °C) in the reaction temperature of T_(50) and T_(90) (corresponding to the benzene conversion = 50% and 90%), which is considerably more efficient than the expensive supported noble metal catalyst (Pt/Al2O3). We combine both theoretical and experimental evidence to provide a new physical insight into the significant effect due to the defects induced by the Ce ion substitution on the catalytic activity of OMS-2. The formation of unique Ce ion substituted OMS-2 nanostructure with Mn vacancies in the framework leads to a significant enhancement of the lattice oxygen activity, thus tremendously increasing the catalytic activity.
机译:Ce掺杂OMS-2扮演一个非常的奈米结构重要的作用在其催化性质。证明通过密度泛函理论(DFT)独特的纳米结构的计算Ce离子取代OMS-2 Mn的空缺为改善框架是有益的催化活性,而纳米结构Ce离子取代OMS-2没有缺陷对催化活性有不利影响。建立一本小说和简单的策略综合这些独特的Ce离子取代OMS-2纳米结构与Mn空缺框架由热液之间的氧化还原反应Ce(3号)3和KMnO4 KMnO4摩尔/ Ce(3号)33:1的比例在120°C。Ce的生产催化剂离子OMS-2代替一个巨大的超薄纳米展品增强苯的催化活性一个重要的氧化,这是证明了这一点(△T_摇(50)= 100°C,△T_(90) = 129°C)的反应温度T_(50)和T_(90)识别识别(苯对应转换= 50%和90%),这是更有效的比昂贵的贵金属催化剂的支持(Pt /氧化铝)。提供一个新的物理实验证据由于洞察的重大影响缺陷引起的Ce离子替换的OMS-2的催化活性。独特的Ce离子取代OMS-2纳米结构与Mn空缺导致框架晶格氧的显著增强活动,从而极大地增加催化活性。

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