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具有异常高的空间电荷限制电流空穴迁移率的共轭折叠物。

Conjugated foldamers with unusually high space-charge-limited current hole mobilities.

机构信息

§Department of Chemistry, Missouri State University, Springfield, Missouri 65897, United States.

∥Nano Scale Sciences Division, Keysight Technologies, Inc., Santa Clara, California 95051, United States.

出版信息

ACS Appl Mater Interfaces. 2015 May 13;7(18):9372-84. doi: 10.1021/acsami.5b01676. Epub 2015 May 4.

Abstract

Charge carrier mobility and its optimization play a critical role in the development of cutting-edge organic electronic and optoelectronic devices. Even though space-charge-limited current (SCLC) hole mobilities as high as 1.4 cm(2) V(-1) s(-1) have been reported for microscopically sized highly ordered liquid-crystalline conjugated small molecules, the SCLC hole mobility of device-sized thin films of conjugated polymers is still much lower, ranging from 10(-6) to 10(-3) cm(2) V(-1) s(-1). Herein, we report the synthesis, characterizations, and thin-film SCLC mobility of three discotic conjugated polymers, INDT-TT, INDT-BT, and INDT-NDT. Optical studies indicate that polymer INDT-NDT adopts a folded conformation in solutions of good or poor solvents, whereas polymer INDT-TT stays as random monomeric chains in good solvents and interchain aggregates in poor solvents. INDT-BT polymer chains, however, stay as foldamers in dilute solutions of good solvents but interchain aggregates in concentrated solutions or poor solvents. Circular dichroism spectroscopy provides clear evidence for the helical folding of INDT-NDT in solutions. Thin films spin-coated from 1,2-dichlorobenzene solutions of the polymers show SCLC hole mobility of 2.20 × 10(-6), 8.79 × 10(-5), and 2.77 × 10(-2) cm(2) V(-1) s(-1) for INDT-TT, INDT-BT, and INDT-NDT, respectively. HRTEM and powder XRD measurements show that INDT-NDT pristine thin films contain nanocrystalline domains, whereas the INDT-TT and INDT-BT films are amorphous. Thin films of INDT-NDT:PC71BM blends show increased crystallinity and further improved SCLC hole mobility up to 1.29 × 10(-1) cm(2) V(-1) s(-1), one of the highest SCLC mobility values ever recorded on solution-processed organic semiconducting thin films. The persistent folding conformation of INDT-NDT is believed to be responsible for the high crystallinity of its thin films and its high SCLC mobilities.

摘要

电荷载流子迁移率及其优化在开发先进的有机电子和光电设备中起着至关重要的作用。尽管微观尺寸的高度有序液晶状共轭小分子的空穴迁移率高达 1.4 cm(2) V(-1) s(-1),但共轭聚合物器件尺寸薄膜的空穴 SCLC 迁移率仍然要低得多,范围在 10(-6)到 10(-3) cm(2) V(-1) s(-1)之间。在这里,我们报告了三种盘状共轭聚合物 INDT-TT、INDT-BT 和 INDT-NDT 的合成、表征和薄膜 SCLC 迁移率。光学研究表明,聚合物 INDT-NDT 在良溶剂和不良溶剂中采用折叠构象,而聚合物 INDT-TT 在良溶剂中保持随机单体链,在不良溶剂中则形成链间聚集体。然而,聚合物 INDT-BT 链在良溶剂的稀溶液中保持折叠构象,而在浓溶液或不良溶剂中则形成链间聚集体。圆二色性光谱为 INDT-NDT 在溶液中的螺旋折叠提供了明确的证据。从聚合物的 1,2-二氯苯溶液旋涂得到的薄膜的 SCLC 空穴迁移率分别为 2.20×10(-6)、8.79×10(-5)和 2.77×10(-2) cm(2) V(-1) s(-1)。HRTEM 和粉末 XRD 测量表明,INDT-NDT 原始薄膜包含纳米晶畴,而 INDT-TT 和 INDT-BT 薄膜则是无定形的。INDT-NDT:PC71BM 共混物的薄膜显示出结晶度增加,并且 SCLC 空穴迁移率进一步提高至 1.29×10(-1) cm(2) V(-1) s(-1),这是在溶液处理的有机半导体薄膜上记录到的最高 SCLC 迁移率值之一。INDT-NDT 的持久折叠构象被认为是其薄膜具有高结晶度和高 SCLC 迁移率的原因。

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