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Mechanical effects of attaching protein layers on nanoscale-thick cantilever beams for resonant detection of virus particles

机译:蛋白质层附着在纳米级悬臂梁上的机械效应,用于共振检测病毒颗粒

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The purpose of this paper is to present experimental results on the alteration of mechanical properties and stiffness constant of nanoscale thick cantilever beams upon attachment of protein layers to the top and bottom surfaces of silicon cantilever beams. Depending on the initial unloaded spring constant value of the cantilever beams, the resonant frequencies were observed to either increase or decrease upon attachment of the protein layers. This depends on whether the increase in spring constant outweighs the increase in the added mass or vice-versa. The spring constant demarcation value at which the resonant frequency will either increase or decrease is estimated to be around 0.01 N/m for the present study.
机译:本文的目的是提出在蛋白质层附着到硅悬臂梁的顶面和底面时,纳米级厚悬臂梁的力学性能和刚度常数发生变化的实验结果。根据悬臂梁的初始未加载弹簧常数值,观察到共振频率随着蛋白质层的附着而增加或减少。这取决于弹簧常数的增加是否大于增加的质量的增加,反之亦然。对于本研究,共振频率将增加或减少的弹簧常数分界值估计约为0.01 N / m。

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