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Nonlinearity in the I-V characteristics in thin lipid films

机译:脂膜I-V特性的非线性

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摘要

The current-voltage characteristics of bilayer lipid membranes of oxidized cholesterol separating two bathing solutions have already been extensively studied under a DC electric field. The observed deviation from linearity at high field has been explained by field-induced pore formation, which then act as ion channels in the membrane. Using thin films of oxidized cholesterol and of dipalmitoyl phosphatidylcholine, we have reported for the first time similar deviation from nonlinearity in the DC I-V characteristics when the applied field is above 40 V/cm. Upon application of an AC field, the conductivity increases as square of frequency, while the nonlinear nature of the I-V characteristic curve is still retained at all frequencies up to 5,000 Hz. Our results indicate that besides pore formation, the intrinsic electrical properties of the constituent lipid molecules are also responsible for the observed nonlinearity.
机译:在直流电场下,已经广泛研究了分离两种沐浴液的氧化胆固醇双层脂质膜的电流-电压特性。场致孔的形成解释了在高场下观察到的与线性的偏离,该孔随后充当膜中的离子通道。使用氧化胆固醇和二棕榈酰磷脂酰胆碱的薄膜,我们首次报道了当施加的电场高于40 V / cm时,DC I-V特性的非线性存在相似的偏差。在施加交流电场后,电导率随频率的平方而增加,而I-V特性曲线的非线性特性在高达5,000 Hz的所有频率下仍保持不变。我们的结果表明,除了孔形成之外,组成脂质分子的内在电学性质也与观察到的非线性有关。

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