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Metal electrode based 3D printed device for tuning microfluidic droplet generation frequency and synchronizing phase for serial femtosecond crystallography

机译:基于金属电极的3D印刷装置,用于调节微流体液滴生成频率和串行飞秒晶体晶体的同步阶段

摘要

Methods and systems are provided for serial femtosecond crystallography for reducing the vast amount of waste of injected crystals practiced with traditional continuous flow injections. A micrometer-scale 3-D printed water-in-oil droplet generator device includes an oil phase inlet channel, an aqueous phase inlet channel, a droplet flow outlet channel, and two embedded non-contact electrodes. The inlet and outlet channels are connected internally at a junction. The electrodes comprise gallium metal injected within the 3-D printed device. Voltage across the electrodes generates water-in-oil droplets, determines a rate for a series of droplets, or triggers a phase shift in the droplets. An external trigger generates the droplets based on the frequency of an XFEL utilized in droplet detection, thereby synchronizing a series of droplets with x-ray pulses for efficient crystal detection. The generated droplets can be coupled to an SFX with XFEL experiment compatible with common liquid injector such as a GDVN.
机译:提供了用于串行飞秒晶体的方法和系统,用于减少用传统的连续流动喷射实施的喷射晶体的大量浪费。千分尺寸3-D印刷水滴发电机装置包括油相入口通道,水相入口通道,液滴流动出口通道和两个嵌入式非接触电极。入口和出口通道在内部连接。电极包括在3-D印刷装置内注入的镓金属。电极两端的电压产生油内液滴,确定一系列液滴的速率,或者触发液滴中的相移。外部触发基于液滴检测中使用的XFEL的频率产生液滴,从而使一系列具有X射线脉冲的液滴进行高效晶体检测。产生的液滴可以耦合到具有XFEL实验的SFX,与诸如GDVN的普通液体注射器兼容。

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