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Creating new building blocks for organic electronics: Synthesis, assembly and devices.

机译:为有机电子产品创建新的构建基块:合成,组装和设备。

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摘要

Described in this thesis are studies to apply methods of organic synthesis and motifs from supramolecular chemistry to design and create new building blocks for organic electronics, emphasizing on their applications in organic thin film transistors. Chapter 2 demonstrates controlled stacking of sulfur-substituted benzenes through hydrogen bonds. The resulting columnar structure can be directed with electric fields. In Chapter 3, electrostatic interactions are introduced to mediate molecular packing of organic semiconductors. A general route is developed to synthesize end-functionalized linear acenes. The synthesis, crystal structures and field effect transistors of linear acenes substituted with F, O and N atoms are illustrated. The relationship between molecular structure and assembly is emphasized. Chapter 4 describes dihydrodiazapentacene as an isostructural motif for pentacene and details its synthesis, assembly and thin film transistors. Chapter 5 discusses how to attach organic semiconductors to gate oxides to approach in situ assembly of monolayer field effect transistors. This method gives high yields of working devices that have source-drain distances less than 100 nm and provides a new avenue for research in thin-film organic transistors where the active molecules are linked to the dielectric surface. In Chapter 6, sterically encumbered aryl groups are applied to block the herringbone motif that is typical of many acenes and direct the arrangement of pentacene backbones into higher-order structures. Analyzing the crystal structures of a series of cruciform shaped pentacenes allows better understanding the relationship between molecular structure, assembly and properties. Field effect mobility up to 0.1 cm2/V•s has been obtained from the thin films that lack long-range order.
机译:本论文描述的研究是应用有机合成方法和超分子化学中的图案来设计和创建有机电子学的新模块,重点是它们在有机薄膜晶体管中的应用。第2章演示了通过氢键可控制地堆叠硫取代的苯。所得的柱状结构可以被电场引导。在第三章中,介绍了静电相互作用来介导有机半导体的分子堆积。开发了合成最终官能化的线性并苯的通用路线。说明了被F,O和N原子取代的线性并苯的合成,晶体结构和场效应晶体管。强调了分子结构和组装之间的关系。第4章将二氢重氮并五苯描述为并五苯的同构结构,并详细介绍了其合成,组装和薄膜晶体管。第5章讨论如何将有机半导体附着到栅极氧化物上,以实现单层场效应晶体管的原位组装。此方法可提供高产量的工作器件,其源极-漏极距离小于100 nm,并且为薄膜有机晶体管的研究提供了新的途径,其中有源分子与介电表面相连。在第6章中,使用空间受限的芳基基团来阻止许多并苯的典型人字形基序,并将并五苯骨架排列成更高阶结构。分析一系列十字形戊烯的晶体结构可以更好地理解分子结构,组装和性质之间的关系。从缺乏长程有序的薄膜中获得了高达0.1 cm2 / V•s的场效应迁移率。

著录项

  • 作者

    Miao, Qian.;

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Chemistry Organic.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 209 p.
  • 总页数 209
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:41:40

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