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Membrane-enhanced surface acoustic wave analysis of grafted polymer brushes

机译:接枝聚合物刷的膜增强表面声波分析

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摘要

An analysis is developed for the frequency response of a quartz crystal resonator (often referred to as a quartz crystal microbalance) that is modified with a grafted solvent-swollen polymer brush and placed in contact with a membrane capping layer. The shear wave generated at the resonator surface couples into the membrane layer with an efficiency that is strongly dependent on the thickness of the swollen brush layer. As a result, the resonant frequency changes by a maximum amount that is closely approximated by the Sauerbrey shift for the capping layer. The calculated shift substantially decreases for increases in the brush thickness of approximately 10 nm, which gives a net frequency response that is extremely sensitive to the degree of swelling of the polymer brush. An optimum capping layer thickness is determined by balancing the Sauerbrey shift against dissipative effects that weaken the crystal resonance. This optimum membrane thickness depends only weakly on the properties of the membrane material and is in the micron range. Detailed multilayer calculations are presented for the specific case of a poly(ethylene glycol) brush swollen with water and brought into contact with an elastomeric water-permeable membrane. These calculations confirm that the method is sensitive to the properties of the brush layer in the experimentally relevant thickness regime. Connections are also made to conceptually simpler two and three layer models of the acoustic impedance of the material systems that are brought into contact with the resonator.
机译:针对石英谐振器(通常称为石英微天平)的频率响应进行了分析,该谐振器已通过接枝溶剂溶胀的聚合物刷进行了修饰,并与膜覆盖层接触。在谐振器表面产生的剪切波以非常依赖于溶胀刷层厚度的效率耦合到膜层中。结果,对于覆盖层,谐振频率改变最大量,该最大量由索伯里位移近似地近似。对于大约10 nm的刷子厚度的增加,计算出的偏移会显着降低,这会产生对聚合物刷子的溶胀度极为敏感的净频率响应。通过平衡Sauerbrey位移与削弱晶体共振的耗散效应之间的平衡,可以确定最佳的覆盖层厚度。该最佳膜厚度仅在很小程度上取决于膜材料的性质,并且在微米范围内。针对用水溶胀并与弹性透水膜接触的聚乙二醇刷的具体情况,给出了详细的多层计算。这些计算证实了该方法在实验相关的厚度范围内对刷层的性能敏感。还与与谐振器接触的材料系统的声阻抗在概念上更简单的两层和三层模型建立了联系。

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