首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >High-performance organic photorefractive materials containing 2-ethylhexyl plasticized poly(triarylamine)
【24h】

High-performance organic photorefractive materials containing 2-ethylhexyl plasticized poly(triarylamine)

机译:含有2-乙基己基塑化聚(三芳基胺)的高性能有机光刷料

获取原文
获取原文并翻译 | 示例
       

摘要

We have developed high-performance photorefractive (PR) materials containing ternary composites of 2-ethylhexyl plasticized poly(triarylamine) (PTAA), a chromophore, and a photosensitizer. PTAAs containing carbazole or fluorene in a main chain and 2-ethylhexyl in a side chain are synthesized via palladium-complex catalyzed polyamination. The spectroscopic, thermal, and hole-transport properties of these polymers are analysed. The carbazole-containing polymer shows good compatibility with chromophores, affording the high chromophore loading of polymer/chromophore = 70/30 wt%. This polymer can be utlilised in PR devices as a host material without any additional plasticizer. The PR performance of a polymer/chromophre/sensitizer (69/30/1 wt%) composite was evaluated using an optical four-wave mixing technique (FWM) to determine the change in refractive index Delta n and the average-response time constant tau. This composite exhibits results comparable to the inorganic crystals BSO or SPS when the optical sensitivity is maximized at 15.8 cm(3) kJ(-1), with Delta n= 5.3 x 10(-4)and tau= 2 milliseconds under a pump-laser intensity of 149 mW cm(-2). This is one of the highest values obtained for an organic PR composite with a pump laser operating at 633 nm.
机译:我们开发了含有2-乙基己基塑化的聚(三芳基),发色团和光敏剂的三元复合材料的高性能光折叠(PR)材料。通过钯 - 络合物催化的聚酰胺合成含有咔唑或主链中的咔唑或芴中的咔唑或芴。分析了这些聚合物的光谱,热和空穴传输性能。含咔唑的聚合物表现出与发色团的良好相容性,这是聚合物/发色团的高发色团负载= 70/30wt%。该聚合物可以在PR器件中utllilision作为没有任何额外增塑剂的主体材料。使用光学四波混合技术(FWM)评价聚合物/色度/敏化剂(69/30/1wt%)复合材料的PR性能,以确定折射率Delta n的变化和平均响应时间常数tau 。当光学敏感性最大化为15.8cm(3)kJ(-1)时,该复合材料表现出与无机晶体BSO或SPS相当的结果,ΔN= 5.3×10( - 4)和Tau = 2毫秒在泵下 - 激光强度为149 mW cm(-2)。这是对于具有在633nm的泵激光器的有机PR复合材料获得的最高值之​​一。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号