Department of Physiology, University of Leyden, The Netherlands.
J Membr Biol. 1972 Dec;9(1):261-90. doi: 10.1007/BF01868056.
Voltage fluctuations were measured across collodion membranes acting as a constraint between two identical aqueous salt solutions, in the presence of an applied electrical potential difference. Membranes with d-c resistance between 1 and 20 MΩ cm(2) were studied, in solutions of KCl between 0.01 and 1.0 moles per liter.The steady-state d-c currents passed were between 1 and 1,000 namps/cm(2) of membrane. The noise was measured in the frequency range between 8 and 5,000 Hz. The spectral density of the noise power, in excess of that measured at equilibrium, was found to be proportional to the mean power being dissipated in the membrane, and inversely proportional to frequency. The d-c conductance of membrane, and the excess noise, are discussed in terms of the frictional interaction between the ions and the membrane.
在施加直流电势差的情况下,测量了作为两个相同的盐水溶液之间的约束的硝酸纤维素膜的电压波动。研究了直流电阻在 1 到 20 MΩ cm(2) 之间的膜,在 0.01 到 1.0 摩尔每升的 KCl 溶液中。通过的稳定直流电流在 1 到 1000 纳安/厘米(2)的膜之间。在 8 到 5000 Hz 的频率范围内测量了噪声。发现噪声功率的谱密度超过了在平衡时测量到的,与膜中耗散的平均功率成正比,与频率成反比。根据离子与膜之间的摩擦相互作用,讨论了膜的直流电导和过量噪声。