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Nanosecond electron pulses in the analytical electron microscopy of a fast irreversible chemical reaction

机译:纳秒电子脉冲在快速不可逆化学反应的分析电子显微镜中

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We show how the kinetics of a fast and irreversible chemical reaction in a nanocrystalline material at high temperature can be studied using nanosecond electron pulses in an electron microscope. Infrared laser pulses first heat a nanocrystalline oxide layer on a carbon film, then single nanosecond electron pulses allow imaging, electron diffraction and electron energy-loss spectroscopy. This enables us to study the evolution of the morphology, crystallography, and elemental composition of the system with nanosecond resolution. Here, NiO nanocrystals are reduced to elemental nickel within 5?μs after the laser pulse. At high temperatures induced by laser heating, reduction results first in a liquid nickel phase that crystallizes on microsecond timescales. We show that the reaction kinetics in the reduction of nanocrystalline NiO differ from those in bulk materials. The observation of liquid nickel as a transition phase explains why the reaction is first order and occurs at high rates.
机译:我们展示了在高温下在高温下在高温下的快速和不可逆的化学反应的动力学是如何使用电子显微镜中的纳秒电子脉冲进行研究。红外激光脉冲首先在碳膜上加热纳米晶体层,然后单纳秒电子脉冲允许成像,电子衍射和电子能损光谱。这使我们能够研究具有纳秒分辨率的系统的形态,晶体学和元素组成的演变。这里,在激光脉冲之后,NiO纳米晶体在5Ωμs内减小到元素镍。在激光加热诱导的高温下,减少第一在液体镍相中结晶,在微秒时间上结晶。我们表明,在减少纳米晶体中的反应动力学与散装材料的反应动力学不同。液体镍作为过渡阶段的观察解释了为什么反应是首先顺序并且以高速率发生。

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