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首页> 外文期刊>Physical review letters >Low Dose X-Ray Speckle Visibility Spectroscopy Reveals Nanoscale Dynamics in Radiation Sensitive Ionic Liquids
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Low Dose X-Ray Speckle Visibility Spectroscopy Reveals Nanoscale Dynamics in Radiation Sensitive Ionic Liquids

机译:低剂量X射线散斑可见光谱揭示了辐射敏感离子液体中的纳米级动力学。

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X-ray radiation damage provides a serious bottleneck for investigating microsecond to second dynamics on nanometer length scales employing x-ray photon correlation spectroscopy. This limitation hinders the investigation of real time dynamics in most soft matter and biological materials which can tolerate only x-ray doses of kGy and below. Here, we show that this bottleneck can be overcome by low dose x-ray speckle visibility spectroscopy. Employing x-ray doses of 22-438 kGy and analyzing the sparse speckle pattern of count rates as low as 6.7 x 10(-3) per pixel, we follow the slow nanoscale dynamics of an ionic liquid (IL) at the glass transition. At the prepeak of nanoscale order in the IL, we observe complex dynamics upon approaching the glass transition temperature T-G with a freezing in of the alpha relaxation and a multitude of millisecond local relaxations existing well below T-G. We identify this fast relaxation as being responsible for the increasing development of nanoscale order observed in ILs at temperatures below T-G.
机译:X射线辐射损坏为使用X射线光子相关光谱法研究纳米级长度的微秒到秒的动力学提供了严重的瓶颈。这种局限性阻碍了对大多数软质物质和生物材料的实时动力学的研究,这些实时性只能承受kGy及以下的X射线剂量。在这里,我们表明可以通过低剂量X射线散斑可见度光谱技术来克服这一瓶颈。使用22-438 kGy的X射线剂量并分析计数率低至6.7 x 10(-3)/像素的稀疏斑点图案,我们在玻璃化转变过程中遵循离子液体(IL)的缓慢纳米级动力学。在IL的纳米级有序峰时,我们在接近玻璃化转变温度T-G时观察到了复杂的动力学,其中冻结了α弛豫,而许多毫秒的局部弛豫远低于T-G。我们发现这种快速松弛是在低于T-G的温度下在IL中观察到纳米级有序增长的原因。

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