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Band Sedimentation Experiment in Analytical Ultracentrifugation Revisited

机译:分析超速离心的带沉降实验重新判断

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The band sedimentation experiment in analytical ultracentrifugation (AUC) allows for the performance of a chemical reaction inside the AUC and also offers separation of individual pure components in a sedimentation velocity experiment. Although this experiment offers exciting possibilities for application, it is barely used. This is related to the bad definition of the initial conditions. Both the duration and the time of the solution overlay during rotor acceleration are not known. In this study, we investigate these conditions under the variation of the overlay volume using recording of interference patterns in a continuous mode during the acceleration of the rotor. It was found that the overlay occurs at rotor speeds between 770 and 2000 rpm, which is very low compared to typical experimental rotor speeds from 3?000 to 60?000 rpm and therefore elucidates that the generated reaction products, respectively, overlaid species are subject to the centrifugal force almost from the beginning. Also, the duration of the overlay is less than 1.2 s, which is very fast compared to hours of centrifugation time for an experiment and we demonstrated that the overlay compartment is completely emptied during overlay allowing for the precise calculation of the meniscus using the known sample sector geometry. Our results show that the initial conditions of the experiment are defined and should make an adapted analysis possible if the interdiffusion of the two solvents is taken into account, which lead to a dynamic density gradient.
机译:分析超速离心(AUC)中的带沉降实验允许在AUC内进行化学反应,并在沉降速度实验中提供各个纯组分的分离。虽然这个实验为申请提供了令人兴奋的可能性,但它几乎没有使用。这与初始条件的错误定义有关。在转子加速期间溶液覆盖的持续时间和时间都不知道。在本研究中,我们在转子加速期间在连续模式下在连续模式下记录覆盖体积的变化来研究这些条件。发现覆盖物在770和2000rpm之间的转子速度发生,与3?000至60 000rpm的典型实验转子速度相比,其非常低,因此阐明产生的反应产物分别覆盖物种是受试者几乎从一开始就到了离心力。而且,覆盖的持续时间小于1.2s,与实验的离心时间相比,非常快,我们证明覆盖室在覆盖期间完全清空允许使用已知样品精确计算弯月面的精确计算扇区几何。我们的研究结果表明,如果考虑两种溶剂的相互扩展,则定义了实验的初始条件,并且应该使适应性分析,这导致动态密度梯度。

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