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Organic field effect transistor fabrication by a novel patterning technique and the study of organic semiconductor crystallization

机译:一种新型构图技术的有机场效应晶体管的制造以及有机半导体结晶的研究

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摘要

This thesis is concerned with micro/nano fabrication of polymer materials for organic thin film transistor (OTFT) application and crystallization of solution-processable small molecule and conjugated polymer thin film. A method has been developed to form self-assembled arrays of nano/micro wires by controlling solvent evaporation of a solution film that is trapped in between a substrate and a structured template. Various solution-processable materials were successfully patterned by the developed method, with particular focus on conjugated polymers materials, such as p-type & n-type semiconductor polymers, and conductive polymers. The potential applications of such fine patterned materials were demonstrated on both field effect transistors (FET) and electrochemical transistors (ECT). The polymer FET measurement results demonstrated that the device range of on/off ratio was from 10^3 to 10^5 and the range of charge carrier mobility was from 10^(-4) cm^2/Vs to 10^(-2) cm^2/Vs. For the electrochemical transistor, the device can work under a small applied gate and drain bias (less than 0.5 volts). Pattern formation with complicated geometries, pattern transfer processes, and pattern formation dynamics have been investigated. Further, the recrystallization mechanism of amorphous small molecule thin film spin-coated on different substrate was investigated. It was found that a small molecule film crystallized from different substrates can have different preferential orientations caused by a different scenario of materials-substrate interaction, and this can dramatically influence the conductivity of the crystalline film. The dynamics of recrystallization was studied in detail through examination of both growth and nucleation of crystals from their amorphous matrix. The results showed that both the activation energy the small molecule obtained and the crystal growth preferential orientation on different substrates were different during the crystallization process. The study of both the temperature and annealing time influences on the conjugated polymer crystalline film property were also studied experimentally.
机译:本论文涉及用于有机薄膜晶体管(OTFT)应用的聚合物材料的微/纳米制造以及可溶液加工的小分子和共轭聚合物薄膜的结晶。已经开发出一种方法,该方法通过控制陷在衬底和结构化模板之间的溶液膜的溶剂蒸发来形成纳米/微线的自组装阵列。通过开发的方法成功地对各种可溶液处理的材料进行了构图,尤其关注共轭聚合物材料,例如p型和n型半导体聚合物以及导电聚合物。在场效应晶体管(FET)和电化学晶体管(ECT)上都展示了这种精细图案化材料的潜在应用。聚合物FET测量结果表明,器件的开/关比范围为10 ^ 3至10 ^ 5,载流子迁移率范围为10 ^(-4)cm ^ 2 / Vs至10 ^(-2 )cm ^ 2 / Vs。对于电化学晶体管,该器件可以在较小的栅极和漏极偏置(小于0.5伏)下工作。已经研究了具有复杂几何形状,图案转移过程和图案形成动力学的图案形成。此外,研究了旋涂在不同基板上的非晶态小分子薄膜的重结晶机理。已经发现,由不同衬底结晶的小分子膜可以具有由材料-衬底相互作用的不同情形引起的不同的优先取向,并且这可以极大地影响晶体膜的电导率。通过检查晶体的无定形基质的生长和成核,详细研究了再结晶的动力学。结果表明,在结晶过程中,获得的小分子的活化能和在不同基底上的晶体生长优先取向均不同。还研究了温度和退火时间对共轭聚合物晶体膜性能的影响。

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    Zhao Shuo;

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  • 年度 2016
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