Tokunaga Keiji, Iino Hiroaki, Hanna Jun-ichi
J Phys Chem B. 2007 Oct 25;111(42):12041-4. doi: 10.1021/jp079538i. Epub 2007 Oct 3.
We have reinvestigated the charge carrier transport properties in a liquid crystal of 2-(4'-heptyloxyphenyl)-6-dodecylthiobenzothiazole (7O-PBT-S12), for which the electronic conduction was first established in rodlike liquid crystals and for which the highest hole mobility in the smectic A (SmA) phase ever achieved was reported. We found that 7O-PBT-S12 exhibited three crystal phases, one of which appeared in a limited temperature range of 10 degrees just below the phase transition temperature from the SmA phase. In this crystal phase, nondispersive transient photohole currents were observed in time-of-flight experiments, and its hole mobility was determined to be 8 x 10(-3) cm(2)/Vs, slightly higher than that reported previously in the SmA phase. For the SmA phase, however, the hole mobility was 1 x 10(-4) cm(2)/Vs. Furthermore, we established the electron transport in the SmA phase of purified 7O-PBT-S12, whose mobility was the same as the hole mobility in that phase. In order to confirm generality of the new findings in 7O-PBT-S12, we investigated the carrier transport properties of its derivative having a short hydrocarbon chain, 2-(4'-heptyloxyphenyl)-6-butylthiobenzothiazole (7O-PBT-S4), and obtained comparable results. The present results correct a mistake in the previous report and give an idea of what a typical mobility in the SmA phase is. On the basis of these results, we discuss what determines the charge carrier mobility in smectic mesophases.
我们重新研究了2-(4'-庚氧基苯基)-6-十二烷基硫代苯并噻唑(7O-PBT-S12)液晶中的载流子传输特性。该液晶首次在棒状液晶中实现了电子传导,并且报道了其在近晶A(SmA)相中曾达到的最高空穴迁移率。我们发现7O-PBT-S12呈现出三个晶相,其中一个出现在刚好低于从SmA相转变的相变温度10度的有限温度范围内。在这个晶相中,在飞行时间实验中观察到了非色散瞬态光生空穴电流,其空穴迁移率被确定为8×10(-3) cm(2)/Vs,略高于之前报道的SmA相中的迁移率。然而,对于SmA相,空穴迁移率为1×10(-4) cm(2)/Vs。此外,我们确定了纯化的7O-PBT-S12的SmA相中的电子传输,其迁移率与该相中空穴迁移率相同。为了证实7O-PBT-S12中新发现的普遍性,我们研究了其具有短烃链的衍生物2-(4'-庚氧基苯基)-6-丁基硫代苯并噻唑(7O-PBT-S4)的载流子传输特性,并获得了可比的结果。目前的结果纠正了之前报告中的一个错误,并给出了SmA相中典型迁移率的概念。基于这些结果,我们讨论了决定近晶中间相中载流子迁移率的因素。