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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular Origin of Piezo- and Pyroelectric Properties in Collagen Investigated by Molecular Dynamics Simulations
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Molecular Origin of Piezo- and Pyroelectric Properties in Collagen Investigated by Molecular Dynamics Simulations

机译:分子动力学模拟研究胶原蛋白的压电和热电性质的分子起源

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Molecular dynamics simulations were used to study the effect of mechanical and thermal stimuli on the electrostatic properties of collagen model helices. Our model sequences were based on glycine proline and hydroxyproline amino acids. We find that longitudinal mechanical strain induces significant variation of the polarization of the collagen fibril. Such a phenomenon is determined by reorientation of the backbone polar groups, which are free to respond to the mechanical solicitation. This non-negligible effect is facilitated by the peculiar folding structure of the collagen helix, which is characterized by the absence of an extended hydrogen-bond network. The stretching/compression of the helix requires a concomitant winding/unwinding motion of the global structure; therefore, the shear components of the stress tensor are the components that most effectively induce structural modification associated to the piezoelectric response. The present calculations also report a pyroelectric response to thermal activation. Model calculations indicate that the pyroelectric effect is dominated by secondary components associated with the piezoelectric tensor.
机译:分子动力学模拟被用来研究机械和热刺激对胶原模型螺旋的静电性质的影响。我们的模型序列基于甘氨酸脯氨酸和羟脯氨酸氨基酸。我们发现纵向机械应变引起胶原原纤维极化的显着变化。这种现象是由骨架极性基团的取向决定的,骨架极性基团可以自由响应机械诱导。胶原螺旋的特殊折叠结构促进了这种不可忽视的效果,其特征是不存在扩展的氢键网络。螺旋的拉伸/压缩需要整体结构的伴随的缠绕/展开运动。因此,应力张量的剪切分量是最有效地引起与压电响应相关的结构改变的分量。本计算还报告了热活化的热电响应。模型计算表明,热电效应由与压电张量相关的次级分量主导。

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