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首页> 外文期刊>The Journal of Chemical Physics >Ion adsorption and its influence on direct current electric field induced deformations of flexoelectric nematic layers
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Ion adsorption and its influence on direct current electric field induced deformations of flexoelectric nematic layers

机译:离子吸附及其对直流电场诱导柔性向列层变形的影响

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The influence of ion adsorption on the behavior of the nematic liquid crystal layers is studied numerically. The homeotropic flexoelectric layer subjected to the dc electric field is considered. Selective adsorption of positive ions is assumed. The analysis is based on the free energy formalism for ion adsorption. The distributions of director orientation angle, electric potential, and ion concentrations are calculated by numerical resolving of suitable torques equations and Poisson equation. The threshold voltages for the deformations are also determined. It was shown that adsorption affects the distributions of both cations and anions. Sufficiently large number of adsorbed ions leads to spontaneous deformation arising without any threshold if the total number of ions creates sufficiently strong electric field with significant field gradients in the neighborhood of electrodes. The spontaneous deformations are favored by strong flexoelectricity, large thickness, large ion concentrations, weak anchoring, and large adsorption energy.
机译:数值研究了离子吸附对向列液晶层行为的影响.考虑了受直流电场影响的同向性柔性电层。假设选择性吸附正离子。该分析基于离子吸附的自由能形式。通过对合适的扭矩方程和泊松方程进行数值求解,计算了导向角、电势和离子浓度的分布。还确定了变形的阈值电压。结果表明,吸附会影响阳离子和阴离子的分布。如果离子总数在电极附近产生足够强的电场,并且具有显着的场梯度,则足够多的吸附离子会导致自发变形而没有任何阈值。自发变形具有柔性电性强、厚度大、离子浓度大、锚固弱、吸附能大等优点。

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