Hashemi Amrei S M H, Miller Gregory H, Ristenpart William D
Department of Chemical Engineering, University of California Davis, Davis, California 95616, USA.
Phys Rev E. 2019 Jun;99(6-1):062603. doi: 10.1103/PhysRevE.99.062603.
Recent computational and experimental work has established the existence of asymmetric rectified electric fields (AREFs), a type of steady electric field that occurs in liquids in response to an applied oscillatory potential, provided the ions present have different mobilities [Hashemi Amrei et al., Phys. Rev. Lett. 121, 185504 (2018)PRLTAO0031-900710.1103/PhysRevLett.121.185504]. Here we use scaling analyses and numerical calculations to elaborate the nature of one-dimensional AREFs between parallel electrodes. The AREF magnitude is shown to increase quadratically with applied potential at low potentials, increase nonlinearly at intermediate potentials, then increase with a constant rate slower than quadratically at sufficiently high potentials, with no impact at any potential on the spatial structure of the AREF. In contrast, the AREF peak location increases linearly with a frequency-dependent diffusive length scale for all conditions tested, with corresponding decreases in both the magnitude and number of sign changes in the directionality of AREF. Furthermore, both the magnitude and spatial structure of the AREF depend sensitively on the ionic mobilities, valencies, and concentrations, with a potential-dependent peak AREF magnitude occurring at an ionic mobility ratio of D_{-}/D_{+}⪅5. The results are summarized with approximate scaling expressions that will facilitate interpretation of the steady component for oscillatory fields in liquid systems.
最近的计算和实验工作证实了非对称整流电场(AREFs)的存在,这是一种在液体中因施加振荡电势而产生的稳定电场,前提是存在的离子具有不同的迁移率[Hashemi Amrei等人,《物理评论快报》121, 185504 (2018)PRLTAO0031 - 900710.1103/PhysRevLett.121.185504]。在此,我们使用标度分析和数值计算来阐述平行电极之间一维AREFs的性质。结果表明,在低电势下,AREF的大小随施加电势呈二次方增加,在中等电势下呈非线性增加,然后在足够高的电势下以低于二次方的恒定速率增加,且在任何电势下对AREF的空间结构均无影响。相比之下,在所有测试条件下,AREF峰值位置随频率相关的扩散长度尺度呈线性增加,同时AREF方向性的大小和符号变化数量均相应减小。此外,AREF的大小和空间结构都敏感地依赖于离子迁移率、化合价和浓度,当离子迁移率比D_{-}/D_{+}⪅5时,会出现与电势相关的峰值AREF大小。结果用近似标度表达式进行了总结,这将有助于解释液体系统中振荡场的稳定分量。