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单分子力钳实验揭示机械激活硅酯水解的动力学。

Single-molecule force-clamp experiments reveal kinetics of mechanically activated silyl ester hydrolysis.

机构信息

Department of Precision- and Micro-Engineering, Engineering Physics, Munich University of Applied Sciences, Lothstr. 34, 80335 Munich, Germany.

出版信息

ACS Nano. 2012 Feb 28;6(2):1314-21. doi: 10.1021/nn204111w. Epub 2012 Jan 25.

Abstract

We have investigated the strength of silyl ester bonds formed between carboxymethylated amylose (CMA) molecules and silane-functionalized silicon oxide surfaces using AFM-based single-molecule force spectroscopy in the force-clamp mode. Single tethered CMA molecules were picked up, and bond lifetimes were determined at constant clamp forces of 0.8, 1.0, and 1.2 nN at seven temperatures between 295 and 320 K at pH 2.0. The results reveal biexponential rupture kinetics. To obtain the reaction rate constants for each force and temperature individually, the results were analyzed with a biexponential kinetic model using the maximum likelihood estimation (MLE) method. The force-independent kinetic and structural parameters of the underlying bond rupture mechanisms were extracted by fitting the entire data set with a parallel MLE fit procedure using the Zhurkov/Bell model and, alternatively, an Arrhenius kinetics model combined with a Morse potential as an analytic representation of the binding potential. With activation energies between 37 and 40 kJ mol(-1), and with Arrhenius prefactors between 5 × 10(4) and 2 × 10(6) s(-1), the results point to the hydrolysis of the silyl ester bond.

摘要

我们使用基于原子力显微镜的单分子力谱技术在力钳模式下研究了羧甲基化淀粉(CMA)分子与硅烷功能化氧化硅表面之间形成的硅酯键的强度。通过单分子力谱技术,我们提取了单根键合的 CMA 分子,并在 pH 值为 2.0 时,在 295 到 320 K 之间的七个温度下,在 0.8、1.0 和 1.2 nN 的恒定钳力下确定了键的寿命。结果揭示了双指数断裂动力学。为了获得每个力和温度下的反应速率常数,我们使用双指数动力学模型和最大似然估计(MLE)方法对结果进行了分析。通过使用 Zhurkov/Bell 模型和替代的 Arrhenius 动力学模型与 Morse 势能相结合的解析表示来拟合整个数据集,我们提取了与力无关的键断裂机制的动力学和结构参数。其中,Zhurkov/Bell 模型被用于拟合动力学参数,Arrhenius 动力学模型与 Morse 势能被用于拟合结合势能参数。结果表明,在 37 到 40 kJ mol(-1)的活化能范围内,以及在 5 × 10(4)到 2 × 10(6) s(-1)的 Arrhenius 前因子范围内,硅酯键发生了水解反应。

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