首页> 外文会议>International conference on nanochannels, microchannels and minichannels;ICNMM2010 >SOLID/WATER INTERFACE OF FUNCTIONALIZED SILICA SURFACES STUDIED BY DYNAMIC FORCE MEASUREMENTS
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SOLID/WATER INTERFACE OF FUNCTIONALIZED SILICA SURFACES STUDIED BY DYNAMIC FORCE MEASUREMENTS

机译:动态力测量研究的功能化二氧化硅表面的固/水界面

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In this study, silica surfaces were chemically modified yielding dissimilar surfaces with -Br, -NH_2, and -CH_3 functional group terminations. The dynamic response of an oscillating micro-cantilever with a gold-coated tip interacting with the functionalized silica surfaces was studied in electrolyte solutions with pH ranging from 4 to 9. The amplitude and phase of the cantilever oscillation were monitored and used to calculate the effective stiffness of the AFM cantilever, which relates to the double layer interactions and the hydrodynamic damping at the solid/water interface. The data for the dynamic response of the AFM over silica surfaces as a function of chemical functionalization and electrolyte pH show that the effective stiffness has distinctive dependence on the surface charge of functionalized silica surfaces. The hydrodynamic damping also correlates strongly with the relative hydrophobicity of the surface, suggesting a dependence on interfacial characteristics including effective slip lengths. It is hoped that the experimental data reported here will provide insights for development of more theoretical models explaining the underlying mechanisms.
机译:在这项研究中,对二氧化硅表面进行了化学修饰,产生了带有-Br,-NH_2和-CH_3官能团末端的不同表面。在pH为4到9的电解质溶液中研究了带有镀金尖端与功能化二氧化硅表面相互作用的振荡微悬臂梁的动态响应。监测悬臂振动​​的幅度和相位,并用来计算有效值。 AFM悬臂的刚度与双层相互作用和固/水界面的流体动力阻尼有关。 AFM在二氧化硅表面上作为化学官能化和电解质pH的函数的动态响应数据表明,有效刚度对官能化二氧化硅表面的表面电荷具有独特的依赖性。流体动力阻尼还与表面的相对疏水性密切相关,表明对包括有效滑移长度在内的界面特性的依赖性。希望这里报告的实验数据将为开发更多解释潜在机理的理论模型提供见识。

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