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Pulse poling of high performance nonlinear chromophores in polymers

机译:聚合物高性能非线性发色团的脉搏

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Conjugated chromophores with permanent dipole moments can be aligned by heating a thin polymer film containing chromophores in an external electric field. The heated "guest-host" system is then cooled in the field to maintain the chromophores' alignment. Dielectric breakdown and charge transfer, however, often limit the external electric field to about 100 V/μm of film thickness. It was hypothesized that electrical pulses could increase the voltage of the poling field without damaging the sample films. This was achieved by combining an amplified waveform from a function generator with the DC poling field. Pulse amplitudes were varied from 10 to 103 V. Pulse frequencies were varied from 10-1 to 103 Hz with a duty cycle of up to 50% of the pulse period. Pulse amplitudes were found to have optimum effects at less than 15% of the DC field at low frequencies, 0.1-10 Hz, with a sinusoidal pulse shape. It was found that this technique induced up to a 20% improvement in optical properties without damaging the sample films.
机译:具有永久性偶极矩的共轭发色团可以通过在外部电场中加热含有发色团的薄聚合物膜来对齐。然后在现场冷却加热的“客体主机”系统以维持发色团对齐。然而,介电击穿和电荷转移通常将外部电场限制为约100V /μm的膜厚度。假设电脉冲可以增加抛光场的电压而不损坏样品膜。这是通过将来自函数发生器的放大波形与DC极化场组合来实现的。脉冲幅度从10到103 V变化。脉冲频率从10-1到103Hz变化,占空比高达50%的脉冲周期。发现脉冲幅度在低频,0.1-10Hz的低于DC场的少于15%,具有正弦脉冲形状。结果发现,这种技术在不损坏样品膜的情况下诱导光学性质的提高20%。

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