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Nanocrystals in compression: unexpected structural phase transition and amorphization due to surface impurities

机译:纳米晶体在压缩:意想不到的结构由于表面相变和无定形化杂质

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We report an unprecedented surface doping-driven anomaly in the compression behaviors of nanocrystals demonstrating that the change of surface chemistry can lead to an interior bulk structure change in nano-particles. In the synchrotron-based X-ray diffraction experiments, titania nanocrystals with low concentration yttrium dopants at the surface are found to be less compressible than undoped titania nanocrystals. More surprisingly, an unexpected TiO2(II) phase (alpha-PbO2 type) is induced and obvious anisotropy is observed in the compression of yttrium-doped TiO2, in sharp contrast to the compression behavior of undoped TiO2. In addition, the undoped brookite nanocrystals remain with the same structure up to 30 GPa, whereas the yttrium-doped brookite amorphizes above 20 GPa. The abnormal structural evolution observed in yttrium-doped TiO2 does not agree with the reported phase stability of nano titania polymorphs, thus suggesting that the physical properties of the interior of nanocrystals can be controlled by the surface, providing an unconventional and new degree of freedom in search for nanocrystals with novel tunable properties that can trigger applications in multiple areas of industry and provoke more related basic science research.
机译:我们报告一个前所未有的表面doping-driven异常的压缩行为纳米晶体,示范的变化表面化学可能导致内部体积纳米粒子结构变化。synchrotron-based x射线衍射实验,二氧化钛纳米晶体与低浓度钇掺杂物的表面发现不如无掺杂二氧化钛可压缩纳米晶体。二氧化钛(II)阶段(alpha-PbO2类型)是诱导明显的各向异性是观察到的压缩yttrium-doped二氧化钛,形成鲜明对比无掺杂二氧化钛的压缩行为。此外,无掺杂纳米晶板钛矿保持30 GPa结构相同的,而yttrium-doped板钛矿amorphizes以上20 GPa。观察到yttrium-doped二氧化钛不同意报道相位稳定性的纳米二氧化钛多晶型物,从而表明物理内部的纳米晶体的性质控制的表面,提供一个非常规和新的自由度寻找新型可调的纳米晶体属性,可以触发应用程序多个行业领域,引发更多相关的基础科学研究。

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