Lee K Y, McConnell H M
Department of Chemistry, Stanford University, California 94305-5080, USA.
Biophys J. 1995 May;68(5):1740-51. doi: 10.1016/S0006-3495(95)80351-6.
Externally applied nonuniform electric fields can strongly affect thermodynamic phases in a lipid monolayer when applied under conditions of temperature, pressure, and composition that are near phase boundaries. Under such conditions nonuniform applied fields can produce or suppress phase separations. Field-induced phase-separated domains have sizes that are in good agreement with calculations. Field gradients can also produce large concentration gradients in binary mixtures just above their critical points. The present work elaborates our earlier studies of these field effects using thermodynamic models of the phase behavior of two-component liquid mixtures. The calculations are of interest in connection with biological membranes that, at the growth temperature, are in a liquid state close to a phase boundary.
当在接近相界的温度、压力和组成条件下施加外部非均匀电场时,其可强烈影响脂质单层中的热力学相。在这种条件下,非均匀施加的电场可产生或抑制相分离。场诱导的相分离域的尺寸与计算结果高度吻合。场梯度还可在二元混合物刚好高于其临界点时产生大的浓度梯度。本研究详细阐述了我们早期使用两组分液体混合物相行为的热力学模型对这些场效应的研究。这些计算对于在生长温度下处于接近相界的液态的生物膜具有重要意义。