Relaxation Processes in Nonlinear Optical Side-Chain Polyimide Polymers

P. Kaatz, P. Prêtre, U. Meier, U. Stalder, C. Bosshard, P. Günter
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Abstract

Optical, nonlinear optical and electro-optic properties of modified side-chain polyimide polymers as shown in Fig. 1 have been determined. Relaxation processes in these nonlinear optical (NLO) polymers are of considerable interest for obtaining a better understanding of the long-term stability of potential devices fabricated from these materials. The relaxation mechanisms of the side-chain chromophores have been investigated above and below the glass transition by second-harmonic decay, dielectric relaxation and differential scanning calorimetry measurements. We find that the time-temperature relaxation behavior of the NLO chromophores in a variety of polymer systems can be understood in terms of current phenomenological descriptions of the glass transition with the aid of a scaling relation.
非线性光学侧链聚酰亚胺聚合物的弛豫过程
测定了图1所示的改性侧链聚酰亚胺聚合物的光学、非线性光学和电光性质。这些非线性光学(NLO)聚合物中的弛豫过程对于更好地理解由这些材料制成的潜在器件的长期稳定性具有相当大的意义。通过二次谐波衰减、介电弛豫和差示扫描量热测量,研究了侧链发色团在玻璃跃迁前后的弛豫机制。我们发现NLO发色团在各种聚合物体系中的时间-温度弛豫行为可以借助标度关系用当前玻璃化转变的现象学描述来理解。
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