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首页> 外文期刊>Journal of Materials Research >Anisotropies in the electrical properties of rod-like aggregates of liquid crystalline phthalocyanines: Direct current conductivities and field-effect mobilities
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Anisotropies in the electrical properties of rod-like aggregates of liquid crystalline phthalocyanines: Direct current conductivities and field-effect mobilities

机译:液晶酞菁棒状聚集体电性能的各向异性:直流电导率和场效应迁移率

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The direct current (dc) conductivities and organic field-effect transistor (OFET) characteristics of a class of octa-substituted liquid crystalline (discotic mesophase) phthalocyanines (Pcs) are discussed. These molecules self-organize into columnar aggregates with large coherence lengths (up to approximately 300 nm). Langmuir-Blodgett films of these molecules were horizontally transferred to either interdigitated microelectrodes (IME) or OFET substrates, so that current flow could be measured either parallel or perpendicular to the column axis. Twenty-eight bilayer films of these PCS on the IME substrates showed anisotropies in dc conductivity up to 50:1, whereas similar PC films showed anisotropies in field effect mobilities of approximately 10:1, for a variety of W/L ratios (source/drain dimensions and spacing). Field-effect mobilities of 1 to 5 X 10~6 cm~2 centre dot V~1 centre dot s~1 were determined from OFET measurements, along the PC column axis, whereas charge mobilities measured from the space charge limited current regime on the IME substrates were in the range of 10~4 cm~2 centre dot V~1 centre dot s~1. Conductive tip atomic force microscopy measurements on the apprximately 500-nm length scale showed that the conductivity anisotropy can be as high as 1000:1 when the PC columns are intimately contacted to an adjacent Au bond pad.
机译:讨论了一类八取代液晶(中间相)酞菁(Pcs)的直流电(dc)电导率和有机场效应晶体管(OFET)的特性。这些分子自组织成具有大相干长度(约300 nm)的柱状聚集体。这些分子的Langmuir-Blodgett薄膜被水平转移到指状微电极(IME)或OFET基板上,因此可以平行或垂直于列轴测量电流。在各种W / L比率下,这些PCS的28个双层膜在IME基板上的直流电导率各向异性高达50:1,而类似的PC膜的场效应迁移率各向异性约为10:1(源/排水口尺寸和间距)。根据OFET的测量结果,沿着PC柱轴,确定了1到5 X 10〜6 cm〜2中心点V〜1中心点s〜1的场效应迁移率,而根据空间电荷限制电流机制对电荷迁移率进行了测量。 IME基板的范围为10〜4 cm〜2中心点V〜1中心点s〜1。导电尖端原子力显微镜在大约500 nm的长度范围内进行测量,结果表明,当PC色谱柱与相邻的Au键合焊盘紧密接触时,电导率各向异性可以高达1000:1。

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