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Stabilization of metal(II)oxides on the nanoscale

机译:纳米级金属(II)氧化物的稳定化

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Increasing surface-to-volume ratios for nanoscale materials may cause metal(II)oxides phases to be thermodynamically unstable compared to their bulk counterparts. For instance, previous studies have found FeO to be unstable for nanoparticles with dimensions below 100?nm. In this study in-situ TEM was used to gradually reduce nanoparticles and nanochains of Fe_(2)O_(3). Electron energy-loss spectroscopy and selected area diffraction at different temperatures not only confirm earlier predictions, but also reveal the unexpected stabilization of the FeO phase for nanochains with a minimal critical length. Hence, dimensionally constrained phases were stabilized on length-scales that were previously considered unattainable.
机译:与大体积材料相比,纳米级材料表面积/体积比的增加可能导致金属(II)氧化物相在热力学上不稳定。例如,以前的研究发现,FeO对于尺寸低于100?nm的纳米粒子而言是不稳定的。在这项研究中,原位TEM用于逐渐还原Fe_(2)O_(3)的纳米粒子和纳米链。电子能量损失谱和在不同温度下的选定区域衍射不仅证实了较早的预测,而且还揭示了具有最小临界长度的纳米链的FeO相具有出乎意料的稳定性。因此,尺寸受限的相被稳定在以前认为无法达到的长度尺度上。

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