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Nanostructured Nickel Aluminate as a Key Intermediate for the Production of Highly Dispersed and Stable Nickel Nanoparticles Supported within Mesoporous Alumina for Dry Reforming of Methane

机译:纳米结构铝酸镍是生产介孔氧化铝中负载的高分散和稳定的镍纳米颗粒以进行甲烷干重整的关键中间体

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摘要

Two routes of preparation of mesoporous Ni-alumina materials favoring the intermediate formation of nanostructured nickel-aluminate are presented. The first one involves an aluminum containing MOF precursor used as sacrificial template to deposit nickel while the second is based on a one-pot synthesis combined to an EISA method. As shown by a set of complementary techniques, the nickel-aluminate nanospecies formed after calcination are homogeneously distributed within the developed mesoporous alumina matrices whose porous characteristics vary depending on the preparation method. A special attention is paid to electron-microscopy observations using especially STEM imaging with high chemical sensitivity and EDS elemental mapping modes that help visualizing the extremely high nickel dispersion and highlight the strong metal anchoring to the support that persists after reduction. This leads to active nickel nanoparticles particularly stable in the reaction of dry reforming of methane.
机译:提出了两种有利于中间形成纳米结构铝酸镍的介孔镍铝材料的制备方法。第一个涉及包含铝的MOF前驱物,用作牺牲模板以沉积镍,而第二个基于结合到EISA方法的一锅法合成。如一组补充技术所示,煅烧后形成的铝酸镍纳米物质均匀分布在已开发的介孔氧化铝基质中,该基质的多孔特性随制备方法而变化。电子显微镜观察尤其受到关注,尤其是使用具有高化学敏感性的STEM成像和EDS元素映射模式,这些元素有助于可视化极高的镍分散度,并突出了牢固的金属锚定在还原后仍然存在的载体上。这导致活性镍纳米颗粒在甲烷的干重整反应中特别稳定。

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