首页> 外文期刊>Collection of Czechoslovak Chemical Communications >Anodic oxidation of novel hole-transporting materials derived from tetraarylbenzidines. Electrochemical and spectroscopic characterization
【24h】

Anodic oxidation of novel hole-transporting materials derived from tetraarylbenzidines. Electrochemical and spectroscopic characterization

机译:衍生自四芳基联苯胺的新型空穴传输材料的阳极氧化。电化学和光谱表征

获取原文
获取原文并翻译 | 示例
           

摘要

Fluorenylidene-linked triarylamines, potential hole-transporting materials, have been prepared by the palladium-catalyzed Hartwig-Buchwald amination. Their redox and spectral properties were investigated in solution, applying cyclic voltammetry, UV-VIS and EPR spectroscopy, and in situ spectroelectrochemical measurements. N,N,N',N'-Tetraphenylbenzidine (1), N,N'-di(1 -naphthyl)-N,N'-diphenylbenzidine (2), and triphenylamine (3) served as model substances in the study of the synthesized complex compounds 4 and 5. In structure 4, two triphenylamine centres are linked with a non-conjugated fluorene bridge; in structure 5, true tetraarylbenzidine skeletons with two nitrogens are linked with a conjugated biphenylbridge system. In addition, structure 5 contains a non-conjugated fluorene bridge. The presence of the fluorene moiety in the molecular design has a significant influence on the investigated properties of the new materials. In the anodic oxidation of the tetraarylbenzidinetype compounds (1, 2, and 5), two well-defined reversible oxidation peaks were observed. However, the oxidation of the triphenylamine-type structures (3 and 4) is more complex, due to fast consecutive reactions. The dimer-like structures (4 and 5) are characterized by two independent oxidation centres that are simultaneously oxidized at approximately the same potentials. This was confirmed by quantitative cyclovoltammetric as well as UV-VIS investigations. [References: 34]
机译:潜在的空穴传输材料芴基连接的三芳基胺已通过钯催化的Hartwig-Buchwald胺化反应制备。在溶液中,应用循环伏安法,UV-VIS和EPR光谱法以及原位光谱电化学测量,研究了它们的氧化还原和光谱性质。 N,N,N',N'-四苯基联苯胺(1),N,N'-二(1-萘基)-N,N'-二苯基联苯胺(2)和三苯胺(3)作为模型物质研究合成的配合物化合物4和5。在结构4中,两个三苯胺中心与一个非共轭芴桥连接;在结构5中,具有两个氮的真正的四芳基联苯胺骨架与共轭联苯桥系统相连。另外,结构5包含非共轭芴桥。分子设计中芴部分的存在对新材料的研究性质有重大影响。在四芳基联苯胺类化合物(1、2和5)的阳极氧化中,观察到两个明确定义的可逆氧化峰。但是,由于快速连续反应,三苯胺型结构(3和4)的氧化更为复杂。二聚体状结构(4和5)的特征是两个独立的氧化中心,它们在大约相同的电势下同时被氧化。定量的伏安法和UV-VIS研究证实了这一点。 [参考:34]

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