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

机译:9-(2-乙基己基)咔唑,用于载流子传输和光折变材料

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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:我们研究了包含9-(2-乙基己基)咔唑(EHCz)的多组分材料(所谓的液体咔唑)中的载流子传输和光折变性质。通过飞行时间(TOF)技术测量EHCz和聚乙烯咔唑(PVK)的载流子迁移率的电场依赖性。在EHCz的电场为2.5x10〜(5)V / cm的情况下,我们获得的载流子迁移率比PVK的为6.4x10〜(-7)cm〜2 / Vs更高,为4.2x10〜(-6)cm〜2 / Vs 。我们还进行了两束耦合(TBC)技术,研究了包含PVK,EHCz,电致发色团4-哌啶子亚苄基丙二腈(PDCST)和敏化剂C_(60)的客体-宿主聚合物的光折射响应。测量表明,TBC增益取决于PVK和EHCz的混合比。通过将EHCz的浓度从10 wt%增加到60 V /μm,TBC增益从31 cm增加到85 cm〜(-1)。这些结果表明,EHCz对于光电和热折射材料作为空穴传输材料以及增塑剂起着重要作用。

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