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首页> 外文期刊>Analytical and bioanalytical chemistry >Simultaneous measurement of the maximum oscillation amplitude and the transient decay time constant of the QCM reveals stiffness changes of the adlayer
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Simultaneous measurement of the maximum oscillation amplitude and the transient decay time constant of the QCM reveals stiffness changes of the adlayer

机译:同时测量QCM的最大振荡幅度和瞬态衰减时间常数,可以发现吸收层的刚度变化

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Interpretation of adsorption kinetics measured with a quartz crystal microbalance (QCM) can be difficult for adlayers undergoing modification of their mechanical properties. We have studied the behavior of the oscillation amplitude, A_0, and the decay time constant, τ, of quartz during adsorption of proteins and cells, by use of a homemade QCM. We are able to measure simultaneously the frequency, f, the dissipation factor, D, the maximum amplitude, A_0, and the transient decay time constant, τ, every 300 ms in liquid, gaseous, or vacuum environments. This analysis enables adsorption an modification of liquid/mass properties to be distinguished. Moreover the surface coverage and the stiffness of the adlayer can be estimated. These improvements promise to increase the appeal of QCM methodology for any applications measuring intimate contact of a dynamic material with a solid surface.
机译:对于经历机械性能改变的吸附层来说,用石英晶体微量天平(QCM)测量的吸附动力学的解释可能很困难。我们使用自制的QCM研究了蛋白质和细胞吸附过程中石英的振幅A_0和衰减时间常数τ的行为。我们能够在液体,气体或真空环境中每300 ms同时测量频率f,耗散因数D,最大幅度A_0和瞬态衰减时间常数τ。该分析使得能够区分吸附的液体/质量性质的改变。而且,可以估计附加层的表面覆盖率和刚度。这些改进有望提高QCM方法论在测量动态材料与固体表面紧密接触的任何应用中的吸引力。

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