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9-(2-Ethylhexyl)carbazole for carrier transport and photorefractive materials

机译:9-(2-乙基己基)脱位用于载体输送和光折射物质

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We investigated the carrier transport and photorefractive properties in multi-component materials containing 9-(2-ethylhexyl)carbazole (EHCz), so-called liquid carbazole. The electric-field dependence of the carrier mobility for EHCz and polyvinylcarbazole (PVK) was measured by the time-of-fiight (TOF) technique. We obtained the higher carrier mobility of 4.2x10~(-6) cm~2/Vs with an electric field of 2.5x10~5 V/cm for EHCz than that of 6.4x10~(-7) cm~2/Vs for PVK. We also performed the two-beam coupling (TBC) technique to investigate photorefractive responses for the guest-host polymers containing PVK, EHCz, the electro-optic chromophore 4-piperidinobenzylidene malonitrile (PDCST), and the sensitizer C_(60). The measurement showed that the TBC gain depended on the mixture ratio of PVK and EHCz. The TBC gain was enhanced from 31 to 85 cm~(-1) at an electric field of 60 V/μm by increasing the concentration of EHCz from 10 to 15 wt%. These results show that EHCz plays important role for the optoelectronic and hotorefractive materials as a hole transport materials as well as a plasticizer.
机译:我们研究了含有9-(2-乙基己基)咔唑(EHCZ),所谓的液体咔唑的多组分材料中的载体传输和光焦度性质。通过灌注时间(TOF)技术测量EHCZ和聚乙烯咔唑(PVK)对载体迁移率的电场依赖性。我们获得了4.2x10〜(-6)cm〜2 / vs的载流量较高,电场为2.5×10〜5 v / cm的电场,对于EHCZ,比PVK为6.4x10〜(-7)cm〜2 / vs 。我们还进行了双梁耦合(TBC)技术,以研究含有PVK,EHCZ,电光发色团4-哌啶苄基丙二腈(PDCST)和敏化剂C_(60)的光反应的光焦响应。测量表明,TBC增益依赖于PVK和EHCZ的混合比。通过将EHCZ的浓度从10至15wt%增加,在60V /μm的电场以31至85cm〜(-1)增强了TBC增益。这些结果表明,EHCZ对光电和热刷材料作为空穴传输材料以及增塑剂对光电和热刷流材料起着重要作用。

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