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Liquid-phase mega-electron-volt ultrafast electron diffraction

机译:液相百搭 - 电子伏超衍射电子衍射

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The conversion of light into usable chemical and mechanical energy is pivotal to several biological and chemical processes, many of which occur in solution. To understand the structure–function relationships mediating these processes, a technique with high spatial and temporal resolutions is required. Here, we report on the design and commissioning of a liquid-phase mega-electron-volt (MeV) ultrafast electron diffraction instrument for the study of structural dynamics in solution. Limitations posed by the shallow penetration depth of electrons and the resulting information loss due to multiple scattering and the technical challenge of delivering liquids to vacuum were overcome through the use of MeV electrons and a gas-accelerated thin liquid sheet jet. To demonstrate the capabilities of this instrument, the structure of water and its network were resolved up to the 3 rd hydration shell with a spatial resolution of 0.6??; preliminary time-resolved experiments demonstrated a temporal resolution of 200 fs.
机译:光进入可用化学和机械能的转化为几种生物和化学方法,其中许多在溶液中发生。要理解调解这些过程的结构功能关系,需要一种具有高空间和时间分辨率的技术。在此,我们报告了液相百态型电子伏(MEV)超快电子衍射仪的设计和调试,用于研究溶液中结构动力学的研究。通过使用MEV电子和气体加速的薄液片射流,克服了电子浅渗透深度和由所得信息损失引起的所得信息损失引起的限制。为了证明这种仪器的能力,水及其网络的结构被解决到3个RD水合壳,空间分辨率为0.6 ??初步时间解决实验表明了200 FS的时间分辨率。

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