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Faceted metal and metal oxide nanoparticles: design, fabrication and catalysis

机译:在上雕琢平面的金属和金属氧化物纳米粒子:设计、制造和催化作用

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摘要

The review addresses new advances in metal, bimetallic, metal oxide, and composite particles in their nanoregime for facet-selective catalytic applications. The synthesis and growth mechanisms of the particles have been summarized in brief in this review with a view to develop critical examination of the faceted morphology of the particles for catalysis. The size, shape and composition of the particles have been found to be largely irrelevant in comparison to the nature of facets in catalysis. Thus selective high-and low-index facets have been found to selectively promote adsorption, which eventually leads to an effective catalytic reaction. As a consequence, a high density of atoms rest at the corners, steps, stages, kinks etc on the catalyst surface in order to host the adsorbate efficiently and catalyze the reaction. Again, surface atomic arrangement and bond length have been found to play a dominant role in adsorption, leading to effective catalysis.
机译:金属材料的审查地址的新进展。双金属、金属氧化物和复合粒子在nanoregime facet-selective催化应用程序。粒子的简要总结本文以发展至关重要考试在上雕琢平面的形态的粒子的催化。的组成粒子被发现在很大程度上与自然无关在催化方面。有选择地低指数面被发现促进吸附,最终导致了有效的催化反应。高密度的原子在角落休息,步骤,阶段,在催化剂表面缺陷等主机被吸附物有效地和催化反应。安排和键长已经被发现发挥主导作用,吸附,导致有效的催化作用。

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