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Self Assembled Block Copolymer Gate Insulators with Cylindrical Nanostructures for Pentacene Thin Film Transistor

机译:用于并五苯薄膜晶体管的具有圆柱形纳米结构的自组装嵌段共聚物栅极绝缘子

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This study examined the effect of a chemically nanostructured surface of cylinder forming poly(styrene-b-methyl methacrylate) (PS-b-PMMA) and poly(styrene-b-4vinyl pyridine) (PS-b-P4VP) block copolymer gate dielectrics on the performance of the bottom gate pentacene organic thin film transistor (OTFT). The field effect mobility of pentacene is affected mainly by the chemical properties of the top skin of a block copolymer layer. In the case of PS-b-PMMA with cylindrical PMMA microdomains that are located very closely at the block copoly-mer-pentacene interface because the surface energy of PMMA is similar to that of PS, the field effect mobility in general corresponds to the area averaged value of the two mobilities with the pure PS and PMMA layer. On the other hand, PS-b-P4VP copolymer results in a similar field effect mobility to that of the pure PS layer because the cylindrical P4VP microdomains are embedded in the PS matrix of which the surface energy is much lower than that of P4VP. The orientation of the cylindrical PMMA microdomains with respect to the surface also affects the field effect mobility, where the PMMA microdomains are aligned perpendicular to the surface, gave rise to a mobility approximately 50% higher than those parallel to the surface. The composite model with parallel and series resistance units offers qualitative understanding of these results.
机译:这项研究检查了圆柱状聚(苯乙烯-b-甲基丙烯酸甲酯)(PS-b-PMMA)和聚(苯乙烯-b-4乙烯基吡啶)(PS-b-P4VP)嵌段共聚物栅极电介质的化学纳米结构表面的影响底栅并五苯有机薄膜晶体管(OTFT)的性能并五苯的场效应迁移率主要受嵌段共聚物层顶皮化学性质的影响。在PS-b-PMMA具有圆柱形PMMA微区的情况下,由于PMMA的表面能与PS相似,因此非常紧密地位于嵌段共聚-并五苯界面处,场效应迁移率通常对应于面积纯PS和PMMA层的两种迁移率的平均值。另一方面,PS-b-P4VP共聚物的场效应迁移率与纯PS层相似,这是因为圆柱形P4VP微区嵌入在PS基质中,其表面能远低于P4VP。圆柱形PMMA微区相对于表面的方向也影响场效应迁移率,其中PMMA微区垂直于表面排列,其迁移率比平行于表面的迁移率高约50%。具有并联和串联电阻单元的复合模型可定性地理解这些结果。

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