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Chemisorption-induced microcantilever deflection: a theoretical model

机译:化学吸附引起的微悬臂梁偏转:一个理论模型

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Microcantilever-based techniques are often used to measure the changes of surface stress and infinitesimal mass induced by adsorbed atoms/molecules on the cantilever surface, In this paper, an energy method using a valence force model is presented to study the cantilever bending behaviour induced by chemisorption. The surface stress change induced by chemisorption is estimated. The chemisorption of oxygen on Si(100) surface is taken as a representative example. The results are consistent with relevant experimental observations. It is shown that chemisorption-induced deformation behaviour of cantilevers shows a distinct dependence on the bond configurations formed by adsorbed atoms and substrate atoms, as illustrated by the Si(100)-O cluster in this paper. The study is helpful for the optimal design of microcantilever-based measurement techniques.
机译:基于微悬臂梁的技术通常用于测量悬臂表面上吸附的原子/分子引起的表面应力和极小质量的变化,本文提出了一种利用价态模型的能量方法来研究由悬臂梁引起的悬臂弯曲行为。化学吸附。估计了由化学吸附引起的表面应力变化。氧在Si(100)表面上的化学吸附作用是一个代表性的例子。结果与相关实验观察结果一致。结果表明,化学吸附诱导的悬臂变形行为表现出对由吸附原子和基质原子形成的键构型的明显依赖性,如本文中的Si(100)-O团簇所示。该研究有助于基于微悬臂梁的测量技术的优化设计。

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