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Evaluation of Chemical Interactions between Small Molecules in the Gas Phase Using Chemical Force Microscopy

机译:用化学力显微镜评估气相中小分子之间的化学相互作用

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摘要

Chemical force microscopy analyzes the interactions between various chemical/biochemical moieties in situ. In this work we examined force-distance curves and lateral force to measure the interaction between modified AFM tips and differently functionalized molecular monolayers. Especially for the measurements in gas phase, we investigated the effect of humidity on the analysis of force-distance curves and the images in lateral force mode. Flat chemical patterns composed of different functional groups were made through micro-contact printing and lateral force mode provided more resolved analysis of the chemical patterns. From the images of 1-octadecanethiol/11-mercapto-1-undecanoic acid patterns, the amine group functionalized tip brought out higher contrast of the patterns than an intact silicon nitride tip owing to the additional chemical interaction between carboxyl and amine groups. For more complex chemical interactions, relative chemical affinities toward specific peptides were assessed on the pattern of 1-octadecanethiol/phenyl-terminated alkanethiol. The lateral image of chemical force microscopy reflected specific preference of a peptide to phenyl group as well as the hydrophobic interaction.
机译:化学力显微镜可原位分析各种化学/生化部分之间的相互作用。在这项工作中,我们检查了力-距离曲线和横向力,以测量改性AFM尖端与功能不同的分子单分子层之间的相互作用。特别是对于气相测量,我们研究了湿度对力-距离曲线分析和横向力模式下图像的影响。通过微接触印刷制作了由不同官能团组成的平坦化学图案,侧向力模式为化学图案提供了更清晰的分析。从1-十八烷硫醇/ 11-巯基-1-十一烷酸图案的图像中,由于羧基和胺基团之间存在额外的化学相互作用,胺基官能化的笔尖比完整的氮化硅笔尖具有更高的图案对比度。对于更复杂的化学相互作用,根据1-十八烷硫醇/苯基末端链烷硫醇的模式评估对特定肽的相对化学亲和力。化学力显微镜的侧面图像反映了肽对苯基的特殊偏好以及疏水性相互作用。

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