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通过电晕放电的动电流体动力学流动控制二元溶质混合物的相分离的动力学驱动自组装。

Kinetically driven self-assembly of a binary solute mixture with controlled phase separation via electro-hydrodynamic flow of corona discharge.

机构信息

Department of Materials Science and Engineering, Yonsei University, Seoul, 120-749, Korea.

出版信息

Nanoscale. 2012 Oct 21;4(20):6219-34. doi: 10.1039/c2nr31721d.

Abstract

This feature article describes a new and facile process to fabricate a variety of thin films of non-volatile binary solute mixtures suitable for high performance organic electronic devices via electro-hydrodynamic flow of conventional corona discharge. Both Corona Discharge Coating (CDC) and a modified version of CDC, Scanning Corona Discharge Coating (SCDC), are based on utilizing directional electric flow, known as corona wind, of the charged uni-polar particles generated by corona discharge between a metallic needle and a bottom plate under a high electric field (5-10 kV cm(-1)). The electric flow rapidly spreads out the binary mixture solution on the bottom plate and subsequently forms a smooth and flat thin film in a large area within a few seconds. In the case of SCDC, the static movement of the bottom electrode on which a binary mixture solution is placed provides further control of thin film formation, giving rise to a film highly uniform over a large area. Interesting phase separation behaviors were observed including nanometer scale phase separation of a polymer-polymer binary mixture and vertical phase separation of a polymer-organic semiconductor mixture. Core-shell type phase separation of either polymer-polymer or polymer-colloidal nanoparticle binary mixtures was also developed with a periodically patterned microstructure when the relative location of the corona wind was controlled to a binary solution droplet on a substrate. We also demonstrate potential applications of thin functional films with controlled microstructures by corona coating to various organic electronic devices such as electroluminescent diodes, field effect transistors and non-volatile polymer memories.

摘要

这篇专题文章描述了一种新的简易工艺,通过常规电晕放电的电动力学流来制造各种适用于高性能有机电子器件的非易失性二元溶质混合物的薄膜。电晕放电镀膜(CDC)和电晕放电镀膜的一种改进型,扫描电晕放电镀膜(SCDC),都基于利用在高电场(5-10 kV cm(-1))下,金属针和底板之间的电晕放电产生的带电单极粒子的定向电流,即电晕风。电流迅速将二元混合物溶液在底板上扩散,并在几秒钟内迅速在大面积上形成光滑平整的薄膜。在 SCDC 的情况下,放置二元混合物溶液的底电极的静态运动进一步控制了薄膜的形成,从而在大面积上形成非常均匀的薄膜。观察到了有趣的相分离行为,包括聚合物-聚合物二元混合物的纳米级相分离和聚合物-有机半导体混合物的垂直相分离。当控制电晕风相对于基底上的二元溶液液滴的相对位置时,还开发了聚合物-聚合物或聚合物-胶体纳米粒子二元混合物的核壳型相分离,具有周期性图案化的微结构。我们还通过电晕镀膜演示了具有受控微观结构的功能薄膜在各种有机电子器件中的潜在应用,例如电致发光二极管、场效应晶体管和非易失性聚合物存储器。

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