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Liquid sample delivery techniques for serial femtosecond crystallography

机译:连续飞秒晶体学的液体样品输送技术

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摘要

X-ray free-electron lasers overcome the problem of radiation damage in protein crystallography and allow structure determination from micro- and nanocrystals at room temperature. To ensure that consecutive X-ray pulses do not probe previously exposed crystals, the sample needs to be replaced with the X-ray repetition rate, which ranges from 120 Hz at warm linac-based free-electron lasers to 1 MHz at superconducting linacs. Liquid injectors are therefore an essential part of a serial femtosecond crystallography experiment at an X-ray free-electron laser. Here, we compare different techniques of injecting microcrystals in solution into the pulsed X-ray beam in vacuum. Sample waste due to mismatch of the liquid flow rate to the X-ray repetition rate can be addressed through various techniques.
机译:X射线自由电子激光器克服了蛋白质晶体学中辐射损伤的问题,并允许在室温下根据微晶体和纳米晶体确定结构。为了确保连续的X射线脉冲不会探测到先前暴露的晶体,需要用X射线重复率替换样本,该重复率的范围从温暖的基于直线加速器的自由电子激光器的120 Hz到超导直线加速器的1 MHz。因此,在X射线自由电子激光器中,液体注射器是连续飞秒晶体学实验的重要组成部分。在这里,我们比较了在真空中将微晶溶液注入到脉冲X射线束中的不同技术。可以通过各种技术解决由于液体流速与X射线重复率不匹配引起的样品浪费。

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