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The Capacitance and Electromechanical Coupling of Lipid Membranes Close to Transitions: The Effect of Electrostriction

机译:接近转变的脂质膜的电容和机电耦合:电致伸缩的影响

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摘要

Biomembranes are thin capacitors with the unique feature of displaying phase transitions in a physiologically relevant regime. We investigate the voltage and lateral pressure dependence of their capacitance close to their chain melting transition. Because the gel and the fluid membrane have different area and thickness, the capacitance of the two membrane phases is different. In the presence of external fields, charges exert forces that can influence the state of the membrane, thereby influencing the transition temperature. This phenomenon is called “electrostriction”. We show that this effect allows us to introduce a capacitive susceptibility that assumes a maximum in the melting transition with an associated excess charge. As a consequence, voltage regimes exist in which a small change in voltage can lead to a large uptake of charge and a large capacitive current. Furthermore, we consider electromechanical behavior such as pressure-induced changes in capacitance, and the application of such concepts in biology.
机译:生物膜是薄电容器,具有在生理相关状态下显示相变的独特功能。我们研究了其电容接近链熔化转变时电压和侧向压力的依赖性。由于凝胶和流体膜的面积和厚度不同,因此两个膜相的电容也不同。在存在外部电场的情况下,电荷施加的力会影响膜的状态,从而影响转变温度。这种现象称为“电致伸缩”。我们表明,这种效应使我们能够引入电容性磁化率,该电容性化率在熔化过渡过程中假定为最大,并带有相关的过量电荷。结果,存在电压状态,其中电压的小变化可导致大量的电荷吸收和大的电容性电流。此外,我们考虑了机电行为,例如压力引起的电容变化,以及此类概念在生物学中的应用。

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