## Abstract A physicomathematical model of ion transport through a synthetic electrochemically switchable membrane with nanometric metalβplated pores is presented. Due to the extremely small size of the cylindrical pores, electrical double layers formed inside overlap, and thus, strong electrostati
Semiconductor theory of ion transport in thin lipid membranes: I. Potential and field distributions
β Scribed by Ling Y. Wei; B.Y. Woo
- Publisher
- Springer
- Year
- 1974
- Tongue
- English
- Weight
- 883 KB
- Volume
- 36
- Category
- Article
- ISSN
- 1522-9602
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β¦ Synopsis
In the theory as presented in this paper and the following one, we shall attempt to apply the semiconductor principles and methods to the study of ion transport in thin lipid membranes. Detailed formulations are given on the potential energy barriers at the interfaces, voltage drops in the polar and non-polar regions, and potential and field distributions in the diffuse double layer and within a charged membrane. These results will be used mainly as the boundary conditions for the solution of ion flow as to be given in the following paper. The analysis clearly indicates that the ion transport is interface-limited and is profoundly influenced by the presence of surface charges. An explanation of l~a + extrusion in nerve membrane is given based on the field distribution analysis. The theory also suggests that the "membrane potential" depends mainly on surface charges but not necessarily on ion permeation through the membrane.
π SIMILAR VOLUMES
## Abstract The coupling of the constitutive expression for the electrostatic potential as specified through Poisson's equation together with the constitutive equations for the mechanisms of convection, diffusion, electrophoretic migration, and adsorption provides the necessary set of constitutive