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Anisotropic surface hole-transport property of triphenylamine-derivative single crystal prepared by solution method

机译:溶液法制备的三苯胺衍生物单晶的各向异性表面空穴传输性质

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This paper reports the anisotropic hole transport at the triphenylamine-derivative single crystal surface prepared by a solution method. Triphenylamine derivatives are commonly used in a hole-transport material for organic photoconductors of laser-beam printers, in which the materials are used as an amorphous form. For developing organic photovoltaics using the photoconductor's technology, preparation of a single crystal seems to be a specific way by realizing the high mobility of an organic semiconductor. In this study, a single crystal of 4-(2,2-diphenylethenyl)-N,N-bis(4-methylphenyl)-benzenamine (TPA) was prepared and its anisotropic hole-transport property measured. First, the hole-transport property of the TPA was investigated based on its chemical structure and electrochemical redox characteristics. Next, a large-scale single crystal formation at a high rate was developed by employing a solution method based on its solubility and supersolubility curves. The grown TPA was found to be a single crystal based on the polarization micrograph observation and crystallographic analysis. For the TPA single crystal, an anisotropic surface conduction was found, which was well explained by its molecular stack structure. The measured current in the long-axis direction is one order of magnitude greater than that of amorphous TPA. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文报道了通过溶液法制备的三苯胺衍生物单晶表面的各向异性空穴传输。三苯胺衍生物通常用于激光束打印机的有机光电导体的空穴传输材料中,其中该材料以无定形形式使用。为了使用光电导体技术开发有机光伏电池,通过实现有机半导体的高迁移率,制备单晶似乎是一种特定的方法。在这项研究中,制备了4-(2,2-二苯基乙烯基)-N,N-双(4-甲基苯基)-苯胺(TPA)的单晶,并测量了其各向异性空穴传输性能。首先,基于TPA的化学结构和电化学氧化还原特性,研究了TPA的空穴传输性质。接下来,基于其溶解度和超溶解度曲线,通过采用溶液法开发了高速率的大规模单晶。基于偏振显微镜观察和晶体学分析,发现生长的TPA是单晶。对于TPA单晶,发现了各向异性的表面传导,这可以通过其分子堆叠结构很好地解释。长轴方向上的测量电流比非晶TPA的电流大一个数量级。 (C)2016 Elsevier B.V.保留所有权利。

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