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Advances in photoconductive and photorefractive cyclometalated complexes development

机译:光导和光折变环金属化配合物的研究进展

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We present results on the photorefractive performance of cyclometalated complexes in which a central metal atom (Pd or Pt) coordinates two different molecular sub-units in a single species. Depending on the details of their structure, these molecules aggregate in crystals, glasses or liquid crystalline phases. The photorefractive properties of the complexes are discussed by treating separately results obtained in different phases. Crystalline compounds can be dissolved in suitable polymers and we show how phase separation in polymeric composites, which is usually detrimental for sample stability, can be controlled and used to increase photorefractive performance parameters by orders of magnitude. In addition, we present a method for estimating the intensity of the space-charge field in chiral smectic phases without using any of the standard models developed for crystalline or amorphous materials.
机译:我们提出的环金属化配合物的光折射性能的结果,其中一个中心金属原子(Pd或Pt)在一个物种中协调两个不同的分子亚基。根据其结构的细节,这些分子聚集在晶体,玻璃或液晶相中。通过分别处理在不同相中获得的结果来讨论复合物的光折变性质。可以将结晶化合物溶解在合适的聚合物中,我们展示了如何控制聚合物复合材料中的相分离(通常对样品稳定性不利),并将其用于将光折变性能参数提高几个数量级。此外,我们提出了一种方法,用于估计手性近晶相中空间电荷场的强度,而无需使用为晶体或非晶态材料开发的任何标准模型。

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