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首页> 外文期刊>Review of Scientific Instruments >Interpreting atomic force microscopy measurements of hydrodynamic and surface forces with nonlinear parametric estimation
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Interpreting atomic force microscopy measurements of hydrodynamic and surface forces with nonlinear parametric estimation

机译:用非线性参数估计解释原子力显微镜对水动力和表面力的测量

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A nonlinear parameter estimation method has been developed to extract the separation-dependent surface force and cantilever spring constant from atomic force microscope data taken at different speeds for the interaction between a silica colloidal probe and plate in aqueous solution. The distinguishing feature of this approach is that it exploits information from the velocity dependence of the force-displacement data due to hydrodynamic interaction to provide an unbiased estimate of the functional form of the separation-dependent surface force. An assumed function for the surface force with unknown parameters is not required. In addition, the analysis also yields a consistent estimate of the in situ cantilever spring constant. In combination with data from static force measurements, this approach can further be used to quantify the extent of hydrodynamic slip.
机译:已经开发了一种非线性参数估计方法,用于从原子力显微镜数据中提取与分离有关的表面力和悬臂弹簧常数,该数据以不同速度采集,用于硅胶胶体探针和水溶液中板之间的相互作用。这种方法的显着特征是,它利用由于流体动力相互作用而产生的力-位移数据的速度相关性来获取信息,从而提供了与分离相关的表面力的功能形式的无偏估计。不需要具有未知参数的假定表面力函数。此外,分析还可以得出原位悬臂弹簧常数的一致估计。结合来自静态力测量的数据,该方法可以进一步用于量化流体动力滑移的程度。

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