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Generalized equivalent circuits for mixed conductors: silver sulfide as a model system

机译:混合导体的通用等效电路:硫化银作为模型系统

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摘要

AbstractThe generalized equivalent circuit for Hebb–Wagner polarization in the frequency domain proposed by Jamnik and Maier (J Electrochem Soc 146:4183, 1999) includes the space-charge polarization that was previously neglected. In the present work, using a self-coded Fortran program, the completely generalized equivalent circuit is successfully applied to a mixed conducting silver sulfide with an AgI electrode that suppresses the electronic flow. A whole set of fit parameters, such as geometric capacitance, partial conductivities, chemical capacitance or diffusivity, and the blocking and shunting characteristics of electrodes are independently but self-consistently obtained over a range of silver activities, as controlled by a galvanic cell. The interfacial capacitance was found to be much larger than the diffuse space-charge double-layer capacitance and was thus ascribed to the adsorption capacitance at the core of the interface, which should be connected in parallel with the space-charge double-layer polarization. Two simplified equivalent circuits were shown to be good approximations for the spectra at the extreme low and high silver activity, respectively.
机译:摘要Jamnik和Maier(J Electrochem Soc 146:4183,1999)提出了频域Hebb-Wagner极化的广义等效电路,其中包括以前忽略的空间电荷极化。在当前工作中,使用自编码的Fortran程序,将完全通用的等效电路成功地应用于带有抑制电子流的AgI电极的混合导电硫化银。在原电池的控制下,在一定范围的银活度下,可以独立但自洽地获得一整套拟合参数,例如几何电容,部分电导率,化学电容或扩散系数以及电极的阻塞和分流特性。发现界面电容比漫射空间电荷双层电容大得多,因此归因于界面核心处的吸附电容,该电容应与空间电荷双层极化并联连接。示出了两个简化的等效电路,分别是在极低和高银活度下的光谱的良好近似。

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