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TIPS-并五苯/绝缘聚合物共混物中结晶模式对有机场效应晶体管气敏特性的影响

Effect of Crystallization Modes in TIPS-pentacene/Insulating Polymer Blends on the Gas Sensing Properties of Organic Field-Effect Transistors.

作者信息

Lee Jung Hun, Seo Yena, Park Yeong Don, Anthony John E, Kwak Do Hun, Lim Jung Ah, Ko Sunglim, Jang Ho Won, Cho Kilwon, Lee Wi Hyoung

机构信息

Department of Materials Science and Engineering, Research Institute for Advanced Materials, Seoul National University, Seoul, 08826, Republic of Korea.

Department of Organic and Nano System Engineering, Konkuk University, Seoul, 05029, Republic of Korea.

出版信息

Sci Rep. 2019 Jan 10;9(1):21. doi: 10.1038/s41598-018-36652-1.

Abstract

Blending organic semiconductors with insulating polymers has been known to be an effective way to overcome the disadvantages of single-component organic semiconductors for high-performance organic field-effect transistors (OFETs). We show that when a solution processable organic semiconductor (6,13-bis(triisopropylsilylethynyl)pentacene, TIPS-pentacene) is blended with an insulating polymer (PS), morphological and structural characteristics of the blend films could be significantly influenced by the processing conditions like the spin coating time. Although vertical phase-separated structures (TIPS-pentacene-top/PS-bottom) were formed on the substrate regardless of the spin coating time, the spin time governed the growth mode of the TIPS-pentacene molecules that phase-separated and crystallized on the insulating polymer. Excess residual solvent in samples spun for a short duration induces a convective flow in the drying droplet, thereby leading to one-dimensional (1D) growth mode of TIPS-pentacene crystals. In contrast, after an appropriate spin-coating time, an optimum amount of the residual solvent in the film led to two-dimensional (2D) growth mode of TIPS-pentacene crystals. The 2D spherulites of TIPS-pentacene are extremely advantageous for improving the field-effect mobility of FETs compared to needle-like 1D structures, because of the high surface coverage of crystals with a unique continuous film structure. In addition, the porous structure observed in the 2D crystalline film allows gas molecules to easily penetrate into the channel region, thereby improving the gas sensing properties.

摘要

将有机半导体与绝缘聚合物混合,已知是克服单组分有机半导体在高性能有机场效应晶体管(OFET)方面缺点的有效方法。我们表明,当一种可溶液加工的有机半导体(6,13-双(三异丙基硅乙炔基)并五苯,TIPS-并五苯)与一种绝缘聚合物(PS)混合时,混合膜的形态和结构特征会受到诸如旋涂时间等加工条件的显著影响。尽管无论旋涂时间如何,在基板上都会形成垂直相分离结构(TIPS-并五苯在上/PS在下),但旋涂时间决定了在绝缘聚合物上相分离并结晶的TIPS-并五苯分子的生长模式。短时间旋涂的样品中过量的残留溶剂会在干燥液滴中引发对流,从而导致TIPS-并五苯晶体的一维(1D)生长模式。相反,经过适当的旋涂时间后,膜中适量的残留溶剂导致TIPS-并五苯晶体的二维(2D)生长模式。与针状一维结构相比,TIPS-并五苯的二维球晶对于提高FET的场效应迁移率极为有利,并五苯晶体具有独特的连续膜结构,晶体的表面覆盖率高。此外,在二维晶体膜中观察到的多孔结构使气体分子能够轻松渗透到沟道区域,从而改善气敏性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa72/6328639/72e2afad0a02/41598_2018_36652_Fig1_HTML.jpg

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