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A phenomenological microscopic view of chemical reactivity of nanocrystalline materials under shear

机译:剪切作用下纳米晶材料化学反应性的现象学微观观

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摘要

A phenomenological approach is presented to analyse the reaction kinetics and compare the efficiency of processes driven by mechanochemical and thermal activation. Solid phase systems as well as gas-solid processes are examined: the synthesis of equiatomic CoFe nanostructured solid solution, the hydrogen absorption by Mg_2Ni alloy and the CO hydrogenation over supported CoFe powder catalyst. In spite of the low efficiency of the mechanical processing technique, related to the discontinuous treatment, however, when elementary impact events are taken into account, mechanically activated processes show remarkably higher conversion rate values than their thermal counterparts. Such result can be related to the occurrence of mechanochemical effects.
机译:提出了一种现象学方法来分析反应动力学并比较由机械化学和热活化驱动的过程的效率。研究了固相系统以及气固过程:等原子CoFe纳米结构固溶体的合成,Mg_2Ni合金的氢吸收以及负载型CoFe粉末催化剂上的CO加氢。尽管与不连续处理相关的机械加工技术效率低下,但是,当考虑到基本的冲击事件时,机械活化工艺显示出的转化率值明显高于其热对应物。这样的结果可能与机械化学作用的发生有关。

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