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Highly efficient multi-metal catalysts for carbon dioxide reduction prepared from atomically sequenced metal organic frameworks

机译:高效的多金属催化剂,用于从原子序测量的金属有机框架制备的二氧化碳减少

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摘要

The precise control on the combination of multiple metal atoms in the structure of metal-organic frameworks(MOFs)endowed by reticular chemistry,allows the obtaining of materials with compositions that are programmed for achieving enhanced reactivity.The present work illustrates how through the transformation of MOFs with desired arrangements of metal cations,multi-metal spinel oxides with precise compositions can be obtained,and used as catalyst precursor for the reverse water-gas shift reaction.The differences in the spinel initial composition and structure,determined by neutron powder diffraction,influence the overall catalytic activity with changes in the process of in s itu formation of active,metal-oxide supported metal nanoparticles,which have been monitored and characterized with in situ X-ray diffraction and photoelectron spectroscopy studies.
机译:通过网状化学赋予的金属 - 有机框架(MOF)结构中多金属原子组合的精确控制允许获得与用于实现增强的反应性的组合物的材料。目前的工作说明了通过转换的改变具有所需布置的金属阳离子的MOF,可以获得具有精确组合物的多金属尖晶石氧化物,并用作反向水气移反应的催化剂前体。尖晶石初始组成和结构的差异由中子粉末衍射确定,影响总催化活性与ITU形成有源,金属氧化物负载的金属纳米颗粒的方法的变化,该金属纳米颗粒被监测和表征在原位X射线衍射和光电子谱研究中。

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