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利用外加电场操控液滴,以促进晶体薄膜生长。

Droplet manipulation by an external electric field for crystalline film growth.

机构信息

Center for Organic Photonics and Electronics Research, Kyushu University, 744 Motooka, Nishi, Fukuoka 819-0395, Japan.

出版信息

Langmuir. 2013 Jul 30;29(30):9592-7. doi: 10.1021/la401729k. Epub 2013 Jul 16.

Abstract

Combining droplet manipulation by the application of an electric field with inkjet printing is proposed as a unique technique to control the surface wettability of substrates for solution-processed organic field-effect transistors (FETs). With the use of this technique, uniform thin films of 2,7-dioctyl[1]benzothieno[2,3,-b][1]benzothiopene (C8-BTBT) could be fabricated on the channels of FET substrates without self-assembled monolayer treatment. High-speed camera observation revealed that the crystals formed at the solid/liquid interface. The coverage of the crystals on the channels depended on the ac frequency of the external electric field applied during film formation, leading to a wide variation in the carrier transport of the films. The highest hole mobility of 0.03 cm(2) V(-1) s(-1) was obtained when the coverage was maximized with an ac frequency of 1 kHz.

摘要

通过施加电场对液滴进行操控并结合喷墨打印技术,有望成为一种独特的技术来控制溶液处理有机场效应晶体管 (FET) 基底的表面润湿性。采用该技术,可以在不进行自组装单分子层处理的情况下,在 FET 基底的通道上制备出均匀的 2,7-二辛基[1]苯并噻吩[2,3,-b][1]苯并噻吩 (C8-BTBT) 薄膜。高速摄像机观察表明,晶体是在固/液界面形成的。在薄膜形成过程中施加的外电场的交流频率决定了晶体在通道上的覆盖程度,从而导致薄膜的载流子输运发生广泛变化。当交流频率为 1 kHz 时,晶体的覆盖率最大,此时获得的空穴迁移率最高为 0.03 cm(2) V(-1) s(-1)。

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