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极化膜的机械电容特性

Mechano-capacitive properties of polarized membranes.

作者信息

Mosgaard Lars D, Zecchi Karis A, Heimburg Thomas

机构信息

Niels Bohr Institute, University of Copenhagen, Blegdamsvej 17, 2100 Copenhagen Ø, Denmark.

出版信息

Soft Matter. 2015 Oct 28;11(40):7899-910. doi: 10.1039/c5sm01519g. Epub 2015 Sep 1.

Abstract

Biological membranes are capacitors that can be charged by applying a field across the membrane. The charges on the capacitor exert a force on the membrane that leads to electrostriction, i.e. a thinning of the membrane. Since the force is quadratic in voltage, negative and positive voltage have an identical influence on the physics of symmetric membranes. However, this is not the case for a membrane with an asymmetry leading to a permanent electric polarization. Positive and negative voltages of identical magnitude lead to different properties. Such an asymmetry can originate from a lipid composition that is different on the two monolayers of the membrane, or from membrane curvature. The latter effect is called 'flexoelectricity'. As a consequence of permanent polarization, the membrane capacitor is discharged at a voltage different from zero. This leads to interesting electrical phenomena such as outward or inward rectification of membrane permeability. Here, we introduce a generalized theoretical framework, that treats capacitance, polarization, flexoelectricity, piezoelectricity and thermoelectricity in the same language. We show applications to electrostriction, membrane permeability and piezoelectricity and thermoelectricity close to melting transitions, where such effects are especially pronounced.

摘要

生物膜是一种电容器,可通过在膜上施加电场来充电。电容器上的电荷会对膜施加力,从而导致电致伸缩,即膜变薄。由于该力与电压呈二次方关系,因此负电压和正电压对对称膜的物理性质具有相同的影响。然而,对于具有导致永久电极化的不对称性的膜来说并非如此。相同大小的正电压和负电压会导致不同的性质。这种不对称性可能源于膜的两个单层上不同的脂质组成,或者源于膜曲率。后一种效应称为“挠曲电效应”。由于永久极化,膜电容器在非零电压下放电。这会导致有趣的电学现象,例如膜通透性的外向或内向整流。在此,我们引入一个广义理论框架,该框架用相同的语言处理电容、极化、挠曲电效应、压电效应和热电效应。我们展示了该框架在电致伸缩、膜通透性以及接近熔化转变时的压电效应和热电效应方面的应用,在这些情况下这些效应尤为明显。

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