首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Forced Unbinding of Individual Urea-Aminotriazine Supramolecular Polymers by Atomic Force Microscopy: A Closer Look at the Potential Energy Landscape and Binding Lengths at Fixed Loading Rates
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Forced Unbinding of Individual Urea-Aminotriazine Supramolecular Polymers by Atomic Force Microscopy: A Closer Look at the Potential Energy Landscape and Binding Lengths at Fixed Loading Rates

机译:通过原子力显微镜强制解除单个尿素-氨基三嗪超分子聚合物的结合:在固定加载速率下仔细观察势能态和结合长度

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Atomic force microscopy-based single-molecule force spectroscopy (AFM-SMFS) was used to study the forced unbinding of quadruple self-complementary hydrogen-bonded urea—aminotriazine (UAT) complexes in hexadecane (HD). To elucidate the bond strength of individual linkages the unbinding forces of UAT supramolecular polymers were investigated for the first time. The bond rupture was probed at three different, fixed piezo retraction rates in far from equilibrium conditions. The number of supramolecular bonds (N) between AFM tip and the surface was determined by indepen- dent knowledge of the linker length. The observed rupture force of urea—aminotriazine (UAT)-based supramolecular polymer chains was found to decrease with increasing rupture length. The dependence of the most probable rupture force on N was in quantitative agreement with the theory of uncooperative bond rupture for supramolecular linkages switched in series. Experiments with three different, fixed loading rates provided identical values (within the experimental error) for the characteristic bond length xβ and the off-rate constant in the absence of force k_(off) (f= 0). The value of xβ was found to agree with literature data on the hydrogen-bond distance obtained via crystallographic data of the hydrogen-bonded dimer. This work broadens the scope of our previous report showing that relevant parameters of the bond energy landscape can be derived from a single data set of rupture events at a fixed loading rate for supramolecular linkages switched in series.
机译:基于原子力显微镜的单分子力谱(AFM-SMFS)用于研究十六烷(HD)中四重自补氢键合尿素-氨基三嗪(UAT)复合物的强制解开。为了阐明各个键的键合强度,首次研究了UAT超分子聚合物的解键力。在远离平衡条件的情况下,以三种不同的固定压电回缩率探测了粘结断裂。 AFM尖端与表面之间的超分子键(N)的数量取决于对连接子长度的了解。发现基于脲-氨基三嗪(UAT)的超分子聚合物链的断裂力随断裂长度的增加而降低。 N上最可能的断裂力的依赖性与串联交换的超分子键的不合作键断裂理论定量一致。在没有力k_(off)(f = 0)的情况下,使用三种不同的固定加载速率进行的实验提供了相同的值(在实验误差范围内),用于特征键长xβ和断开速率常数。发现xβ的值与关于通过氢键二聚体的晶体学数据获得的氢键距离的文献数据一致。这项工作拓宽了我们先前报告的范围,该报告表明,对于串联切换的超分子连接,可以从固定事件的单个破裂事件数据集中得出键能态的相关参数。

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