首页> 外国专利> MODIFICATION OF A FLOW CELL TO MEASURE ADSORPTION KINETICS UNDER STAGNATION POINT FLOW AND DEVELOPMENT OF A SETUP CORRECTION PROCEDURE FOR OBTAINING ADSORPTION KINETICS AT THE STAGNATION POINT

MODIFICATION OF A FLOW CELL TO MEASURE ADSORPTION KINETICS UNDER STAGNATION POINT FLOW AND DEVELOPMENT OF A SETUP CORRECTION PROCEDURE FOR OBTAINING ADSORPTION KINETICS AT THE STAGNATION POINT

机译:修改流动点以测量驻点流下的吸附动力学,并建立用于在滞留点上获得吸附动力学的设置校正程序

摘要

This application describes a flow cell to perform experiments under well-controlled hydrodynamic conditions. The resulting cell enables combining the advantages of in-situ spectroscopic ellipsometry with stagnation point flow conditions. An additional advantage is that the proposed cell features a fixed position of the “inlet tube” with respect to the substrate, thus facilitating the alignment of multiple substrates. Theoretical calculations were performed by computational fluid dynamics and compared with experimental data (adsorption kinetics) obtained for the adsorption of polyethylene glycol to silica under a variety of experimental conditions. Additionally, a simple methodology to correct experimental data for errors associated with the size of the measured spot and for variations of mass transfer in the vicinity of the stagnation point is herein introduced. The proposed correction method would allow researchers to reasonably estimate the adsorption kinetics at the stagnation point and quantitatively compare their results, even when using different experimental setups. The applicability of the proposed correction function was verified by evaluating the kinetics of protein adsorption under different experimental conditions.
机译:本申请描述了一种在良好控制的流体动力学条件下进行实验的流通池。所得到的单元能够将原位光谱椭圆偏振法的优点与停滞点流动条件相结合。另一个优点是,所提出的隔室具有“入口管”相对于基板的固定位置的特征,从而有利于多个基板的对准。通过计算流体动力学进行理论计算,并将其与在各种实验条件下将聚乙二醇吸附至二氧化硅所获得的实验数据(吸附动力学)进行比较。此外,本文介绍了一种简单的方法来校正实验数据,以消除与测量点大小相关的误差以及在停滞点附近的传质变化。所提出的校正方法将使研究人员即使在使用不同的实验装置时,也可以合理地估计停滞点的吸附动力学并定量比较其结果。通过评估不同实验条件下蛋白质吸附的动力学,验证了所提出的校正函数的适用性。

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