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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Nanoparticles dispersed in liquid crystals: impact on conductivity, low-frequency relaxation and electro-optical performance
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Nanoparticles dispersed in liquid crystals: impact on conductivity, low-frequency relaxation and electro-optical performance

机译:分散在液晶中的纳米粒子:对电导率,低频弛豫和电光性能的影响

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We study the impact of functionalized gold nanoparticles on the impedance response of nematic nanoparticle/liquid crystal dispersions in the frequency range of 0.1 Hz-100 kHz. By fitting a suitable equivalent electric circuit model to the experimental data we show that nanoparticle doping does not affect the permittivity of the nematic host, but significantly increases its conductivity. This causes a Debye-type relaxation process in the Hz and low kHz regime, which originates from mobile charge carriers accumulating near the electrodes of the test cell. The effect of this electrode polarization on the electro-optical response of the nanocomposites is discussed with respect to threshold voltage and dielectric permittivity. We demonstrate that nanoparticle doping does not alter the electro-optic response at frequencies above the occurrence of electrode polarization, while it strongly deteriorates the performance in the low frequency regime.
机译:我们研究了功能化的金纳米颗粒对向列纳米颗粒/液晶分散体在0.1 Hz-100 kHz频率范围内的阻抗响应的影响。通过将合适的等效电路模型拟合到实验数据,我们表明纳米粒子掺杂不会影响向列主体的介电常数,但会显着提高其电导率。这会导致在Hz和低kHz情况下的德拜型弛豫过程,其起源于在测试单元的电极附近积累的移动电荷载流子。关于阈值电压和介电常数,讨论了该电极极化对纳米复合材料的电光响应的影响。我们证明,纳米粒子掺杂不会改变高于电极极化发生频率的电光响应,而会严重降低低频状态下的性能。

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