Ilani A
Biophys J. 1966 May;6(3):329-52. doi: 10.1016/S0006-3495(66)86660-2.
Previous investigations have shown that Millipore filters bearing fixed negatively charged sites saturated with organic solvents behaved like cation exchangers. In this study the mobilities of some cations in bromobenzene-saturated filters were determined at various membrane compositions. Appreciable interaction between counterions in the membrane was demonstrated; e.g., Na(+) was about four times more mobile in a Na(+) membrane than in a K(+) one. The qualitative nature of the interaction could be summarized as follows: the bringing together of rapid and slow counterions in the membrane made the fast ion faster and the slow ion slower. Possible mechanisms for such an interaction are discussed. A quantitative estimation of K and Na mobilities and selectivity factors at various K-Na fractions in the membrane was made. The above parameters were used to compute the potential difference in a K-Na bi-ionic cell. The calculated bi-ionic potential was found to agree reasonably well with the measured value.
先前的研究表明,带有固定负电荷位点且被有机溶剂饱和的密理博过滤器表现得像阳离子交换剂。在本研究中,测定了在溴苯饱和过滤器中一些阳离子在各种膜组成下的迁移率。证明了膜中抗衡离子之间存在明显的相互作用;例如,Na(+)在Na(+)膜中的迁移率比在K(+)膜中约高四倍。这种相互作用的定性性质可总结如下:膜中快速和慢速抗衡离子的聚集使快离子更快,慢离子更慢。讨论了这种相互作用的可能机制。对膜中各种K-Na比例下的K和Na迁移率及选择性因子进行了定量估计。上述参数用于计算K-Na双离子电池中的电位差。发现计算出的双离子电位与测量值相当吻合。