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颗粒表面覆盖率对石英晶体微天平响应影响的数值研究。

A Numerical Study on the Effect of Particle Surface Coverage on the Quartz Crystal Microbalance Response.

机构信息

School of Materials Science and Engineering, Nanyang Technological University , 50 Nanyang Avenue 639798, Singapore.

Centre for Biomimetic Sensor Science, Nanyang Technological University , 50 Nanyang Drive 637553, Singapore.

出版信息

Anal Chem. 2018 Feb 6;90(3):2238-2245. doi: 10.1021/acs.analchem.7b04607. Epub 2018 Jan 12.

Abstract

The quartz crystal microbalance (QCM) is a surface-sensitive measurement technique to characterize adsorption processes at solid-fluid interfaces. While QCM measurements are routinely applied to study homogeneous thin films, characterizing heterogeneous films of adsorbed particles remains challenging because QCM is sensitive to not only the mass of adsorbed particles but also to that of hydrodynamically coupled fluid. To extract information about adsorbed particles, it is necessary to model these hydrodynamic effects, however, current QCM models are restricted to the limit of either a very low surface coverage or to the extrapolated limit of saturation coverage. Herein, we investigated QCM measurement responses in the intermediate surface coverage regime, by conducting lattice Boltzmann simulations of monodisperse, spherical particles that are attached to an oscillating surface. From the simulations, we relate the overtone-dependent QCM frequency and bandwidth shifts to particle size, interparticle distance, and the relevant hydrodynamic length scale. The corresponding results are in qualitative agreement with experimental QCM data for sub-100 nm, gel-phase liposomes. Furthermore, the data provide a theoretical basis for extracting particle sizes from QCM data in the high surface coverage limit.

摘要

石英晶体微天平(QCM)是一种表面敏感的测量技术,用于表征固-液界面的吸附过程。虽然 QCM 测量通常用于研究均匀的薄膜,但表征吸附粒子的非均匀薄膜仍然具有挑战性,因为 QCM 不仅对吸附粒子的质量敏感,而且对水动力耦合流体的质量也敏感。为了提取关于吸附粒子的信息,有必要对这些水动力效应进行建模,然而,目前的 QCM 模型仅限于表面覆盖率非常低或饱和覆盖率的外推极限。在这里,我们通过对附着在振荡表面上的单分散、球形粒子进行格子玻尔兹曼模拟,研究了中间表面覆盖率范围内的 QCM 测量响应。通过模拟,我们将倍频相关的 QCM 频率和带宽移动与粒子大小、粒子间距离以及相关的水动力长度尺度联系起来。相应的结果与亚 100nm 的凝胶相脂质体的实验 QCM 数据定性一致。此外,这些数据为从高表面覆盖率极限的 QCM 数据中提取粒子大小提供了理论基础。

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