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首页> 外文期刊>Inorganica Chimica Acta >Nanocrystalline metal organic framework (MIL-101) stabilized copper Nanoparticles: Highly efficient nanocatalyst for the hydrolytic dehydrogenation of methylamine borane
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Nanocrystalline metal organic framework (MIL-101) stabilized copper Nanoparticles: Highly efficient nanocatalyst for the hydrolytic dehydrogenation of methylamine borane

机译:纳米晶金属有机框架(MIL-101)稳定铜纳米粒子:高效纳米催化剂,用于甲胺硼烷的水解脱氢

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The copper nanoparticles stabilized by nanocrystalline MIL-101 framework (Cu/nano-MIL-101) was reproducibly prepared by following double solvent method combined with liquid phase chemical reduction technique. The characterization of the resulting new material was done by using various analytical techniques including ICP-OES, P-XRD, N-2-adsorption-desorption, XPS, FE-SEM, SEM-EDX, BFTEM and HAADF-STEM; the summation of their results reveals that the formation of well-dispersed and very small sized (0.8 nm) copper nanoparticles within nanocrystalline MIL-101 framework. The catalytic performance of Cu/nano-MIL-101 in terms of activity and stability was tested in the hydrolytic dehydrogenation of methylamine borane (CH3NH2BH3), which has been considered as one of the attractive materials for the efficient chemical hydrogen storage. Cu/nano-MIL-101 catalyzes the hydrolytic dehydrogenation of methylamine borane with high activity (turnover frequency; TOF = 257 mot H-2/mol Cu x h) and conversion ( 99%) under air at room temperature. Moreover, these nano-MIL-101 framework stabilized copper nanoparticles show great durability against to sintering and leaching, which make Cu/nano-MIL-101 reusable nanocatalyst in the hydrolytic dehydrogenation of methylamine-borane. Cu/nano-MIL-101 nanocatalyst retains 83% of its inherent activity at complete conversion even at 10th recycle in the hydrolytic dehydrogenation of methylamine borane.
机译:通过以下双重溶剂方法与液相化学还原技术合并,通过纳米晶体MIL-101框架(Cu /纳米-MIL-101)稳定的铜纳米粒子再现制备。通过使用ICP-OES,P-XRD,N-2吸附 - 解吸,XPS,Fe-SEM,SEM EDX,BFTEM和HAADF-Step,通过使用包括ICP-OES,P-XRD,N-2-2吸附 - 解吸,BFTEM和HAADF-STEM的各种分析技术来表征所述新材料的表征;结果的总和揭示了纳米晶体MIL-101框架内的分散和非常小的铜纳米颗粒的形成。在甲胺硼烷(CH3NH2BH3)的水解脱氢中测试了Cu / Nano-MIL-101的催化性能和稳定性,被认为是有效化学储氢的有吸引力的材料之一。 Cu / Nano-MIL-101催化甲胺硼烷的水解脱氢,高活性(周转频率; TOF = 257 mOT H-2 / MOL Cu x H),在室温下的空气下转化(& 99%)。此外,这些纳米MIL-101框架稳定的铜纳米粒子显示出烧结和浸出的耐用性,其使Cu / Nano-MIL-101可重复使用的纳米催化剂在甲胺 - 硼烷的水解脱氢中。 Cu / Nano-MIL-101纳米催化剂甚至在第10次回收中,在甲胺硼烷的水解脱氢中的第10次循环中,保持其固有活性的83%。

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