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A Modified Surface Forces Apparatus for Single Molecule Tracking

机译:一种用于单分子跟踪的改进的表面力装置

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摘要

To unravel molecular motion within confined liquids,we have combined a surface forces apparatus (SFA) with a highly sensitive fluorescence microscope.Details of our setup including important modifactions to enable the tracking of single dye molecules within nanometer thin confined liquid films are presented.The mechanical and optical performance of our setup is discussed in detail.For a load of 20 mN we observed a circular-shaped contact region (d approx= 300 mum),which results in a confining pressure of about 280 kPa.First experiments on liquid films of tetrakis(2-ethylhexoxy)silane (TEHOS) doped with rhodamine B demonstrated the ability to track single dye molecules within the confining gap of a SFA.The mean diffusion constant was independent of the liquid film thickness of approx 3 x 10~(-8) cm~2/s and thus 10 times smaller than the diffusion constant of rhodamine B in bulk TEHOS.This points to the existence of a thin interface layer with slower molecular dynamics and an attractive potential parallel to the solid surface trapping molecules in this interface region.
机译:为了揭示封闭液体中的分子运动,我们将表面力装置(SFA)与高灵敏度的荧光显微镜相结合。介绍了我们装置的详细信息,包括重要的修饰作用,以便能够追踪纳米薄封闭液体膜中的单个染料分子。详细讨论了该装置的机械和光学性能。在20 mN的载荷下,我们观察到一个圆形的接触区域(d大约= 300 mum),这产生了约280 kPa的围压。罗丹明B掺杂的四(2-乙基己氧基)硅烷(TEHOS)表现出能够追踪SFA限制间隙内的单个染料分子的能力。平均扩散常数与液膜厚度约3 x 10〜(- 8)cm〜2 / s,因此比若丹明B在本体TEHOS中的扩散常数小10倍,这表明存在薄的界面层,分子动力学较慢且具有吸引力与该界面区域中的固体表面俘获分子平行的电势。

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