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Effects of Multiple-Bond Ruptures in Force Spectroscopy Measurements of Interactions between Fullerene C_(60) Molecules in Water

机译:多键断裂在力谱测量水中富勒烯C_(60)分子之间相互作用的影响

摘要

Interactions between fullerene C_(60) molecules in water were measured by force spectroscopy. Fullerene molecules were covalently connected to bifunctional water-soluble poly(ethylene glycol) (PEG) linkers and subsequently tethered to the substrate and to the tip of the atomic force microscope to facilitate single molecule detection and avoid spurious surface effects. The distributions of rupture forces for substrates prepared with different incubation times of C_(60)-PEG-NH_2 exhibit high rupture forces that cannot be explained by the theoretical distribution of single molecule binding. Moreover, the relative amplitude of the high force peak in the histogram increases with incubation time. These observations are explained by attributing the measured high forces to the rupture of multiple bonds between fullerene molecules. Force spectroscopy data analysis based on the most probable forces gives significantly different dissociation rates for samples that exhibit different amplitudes of the high force peak. An approximate analytical model that considers ruptures of two bonds that are simultaneously loaded by tethers with different lengths is proposed. This model successfully fits the distributions of the rupture forces using the same set of kinetic parameters for samples prepared with different grafting densities. It is proposed that this model can be used as a common tool to analyze the probability distributions of rupture forces that contain peaks or shoulders on the high force side of the distribution.
机译:富勒烯C_(60)分子在水中的相互作用通过力谱法进行了测量。富勒烯分子被共价连接到双功能水溶性聚乙二醇(PEG)接头上,随后被束缚在底物和原子力显微镜的尖端上,以促进单分子检测并避免虚假表面效应。用不同的C_(60)-PEG-NH_2孵育时间制备的底物的断裂力分布显示出高断裂力,这不能用单分子结合的理论分布来解释。而且,直方图中高力峰的相对幅度随孵育时间而增加。通过将测得的高力归因于富勒烯分子之间多个键的断裂来解释这些观察结果。基于最可能的力的力谱数据分析给出了显示高力峰幅度不同的样品的解离速率显着不同。提出了一个近似分析模型,该模型考虑了两个键的断裂,这些断裂同时受到不同长度的系链的加载。对于具有不同接枝密度的样品,该模型使用相同的动力学参数集成功地拟合了破裂力的分布。建议将该模型用作分析破裂力概率分布的常用工具,该破裂力在分布的高力侧包含峰值或肩部。

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