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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Electronic and Ionic Transports for Negative Charge Carriers in Smectic Liquid Crystalline Photoconductor
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Electronic and Ionic Transports for Negative Charge Carriers in Smectic Liquid Crystalline Photoconductor

机译:近晶液晶光电导体中负电荷载流子的电子和离子传输

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We have investigated negative charge carrier transport in the smectic mesophases of the 2-phenylnaphthalene derivative,6-(4'-octylphenyl)-2-dodecyloxynaphthalene (8-PNP-O12),using the time-of-flight (TOF) method.We revealed that the negative charge carrier transport in its smectic mesophases had two different mechanisms,i.e.,electronic and ionic conductions: we observed two transits of the carriers in both the smectic A (SmA) and smectic B (SmB) phases and demonstrated their origins by dilution experiments with a hydrocarbon (n-dodecane); the fast transit was attributed to the electronic transport of electrons and the slow one to the ionic transport of negative ions.Furthermore,it was clarified that the ionic transport was caused by small amounts of chemical impurities ionized by trapping photogenerated electrons in 8-PNP-O12 in addition to photoinduced autoionization of the impurities.Furthermore,we determined the trapping lifetimes for electrons to be 140 and 24 mu s for the SmA and SmB phases,respectively.The experimental results suggest the coexistence of two distinctive transport channels for these charge carriers in the smectic mesophases.
机译:我们使用飞行时间(TOF)方法研究了2-苯基萘衍生物6-(4'-辛基苯基)-2-十二烷基氧基萘(8-PNP-O12)的近晶中间相中的负电荷载流子传输。我们揭示了在近晶中间相中负电荷载流子的传输具有两种不同的机理,即电子和离子传导:我们观察了载流子在近晶A(SmA)和近晶B(SmB)两个相中的两次迁移,并证明了它们的起源通过碳氢化合物(正十二烷)的稀释实验;快的迁移归因于电子的电子传输,慢的迁移归因于负离子的离子迁移。此外,阐明了离子迁移是由少量化学杂质引起的,这些杂质是通过将光生电子捕获在8-PNP-中而离子化的。除了杂质的光诱导自电离作用外,O12。此外,我们确定电子在SmA和SmB相的俘获寿命分别为140和24μs。实验结果表明,这些电荷载流子存在两个独特的传输通道在近晶中间相中。

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