Ion Transport in Organic Electrolyte Solution through the Pore Channels of Anodic Nanoporous Alumina Membranes
•Ion transport in organic electrolyte solution in macro- and meso-pores was focused.•Anodic nanoporous alumina membrane was used as a porous material.•The specific ion conductivities drastically decreased in macro- and meso-pores. For the development of high energy density lithium-ion batteries with...
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Veröffentlicht in: | Electrochimica acta 2016-05, Vol.199, p.380-387 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | •Ion transport in organic electrolyte solution in macro- and meso-pores was focused.•Anodic nanoporous alumina membrane was used as a porous material.•The specific ion conductivities drastically decreased in macro- and meso-pores.
For the development of high energy density lithium-ion batteries with the high rate performance, the enhancement of the ion transport in the electrolyte solutions impregnated in the porous electrodes is a key. To study the ion transport in porous electrodes, anodic nanoporous alumina (APA) self-standing membranes with macro- or meso-pores were used as model porous materials. These membranes had nearly spherical pore channels of discrete 20–68nm in diameters. By using the geometric shape of the pores, we attempted to evaluate the specific ion conductivities of the organic electrolyte solution dissolving lithium salt simply. AC impedance spectroscopy measurement of a four-electrode cell with membranes showed one depressed semi-circle in the Nyquist plots and this semi-circle can be assigned as the ion transport resistance in the pores. The specific ion conductivities evaluated from the ion transport resistances and the geometric parameters showed very small values, even in the macro-pores, as compared with that of the bulk electrolyte solution. |
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ISSN: | 0013-4686 1873-3859 |
DOI: | 10.1016/j.electacta.2016.03.049 |