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Accurate calibration and control of relative humidity close to 100% by X-raying a DOPC multilayer.

机译:通过对DOPC多层膜进行X射线精确校准和相对湿度控制,接近100%。

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摘要

In this study, we have designed a compact sample chamber that can achieve accurate and continuous control of the relative humidity (RH) in the vicinity of 100%. A 1,2-dioleoyl-sn-glycero-3-phosphocholine (DOPC) multilayer can be used as a humidity sensor by measuring its inter-layer repeat distance (d-spacing) via X-ray diffraction. We convert from DOPC d-spacing to RH according to a theory given in the literature and previously measured data of DOPC multilamellar vesicles in polyvinylpyrrolidone (PVP) solutions. This curve can be used for calibration of RH close to 100%, a regime where conventional sensors do not have sufficient accuracy. We demonstrate that this control method can provide RH accuracies of 0.1 to 0.01%, which is a factor of 10-100 improvement compared to existing methods of humidity control. Our method provides fine tuning capability of RH continuously for a single sample, whereas the PVP solution method requires new samples to be made for each PVP concentration. The use of this cell also potentially removes the need for an X-ray or neutron beam to pass through bulk water if one wishes to work close to biologically relevant conditions of nearly 100% RH.
机译:在这项研究中,我们设计了一个紧凑的样品室,可以在100%附近实现对连续湿度(RH)的精确连续控制。通过X射线衍射测量其层间重复距离(d间距),可以将1,2-二油酰基-sn-甘油-3-磷酸胆碱(DOPC)用作湿度传感器。我们根据文献中给出的理论以及先前在聚乙烯吡咯烷酮(PVP)溶液中测量的DOPC多层囊泡的数据从DOPC d间距转换为RH。该曲线可用于接近100%的RH校准,这是常规传感器没有足够准确度的一种情况。我们证明了这种控制方法可以提供0.1至0.01%的RH精度,与现有的湿度控制方法相比,这是提高10-100的一个因素。我们的方法可为单个样品连续提供RH的微调功能,而PVP解决方案方法需要针对每个PVP浓度制作新样品。如果人们希望在接近100%RH的生物学相关条件下工作,使用这种电池还可以消除X射线或中子束穿过大量水的需要。

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