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Size controlled nano meter phase structure in thin films of blend polythiophene derivatives

机译:聚噻吩共混物薄膜的尺寸可控的纳米相结构

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In this paper, we show that size controlled nanometer phase structure and nanometer thickness film of blend polymers can be obtained by a physical method under the ultra thin phase separation (UTPS) concept. The blend films of poly 3-(2-(5-chlorobenzotriazolo) ethyl) thiophene (PCBET)/polyvinylcarzole (PVK) system and PCBET/PMPMA (Poly-(p-(methyl)-phenylmethaerylate) system were investigated. Among AFM images of various mixing ratios, the phase separation was clearly observed. The average size of dispersion phase was in the range 100 nm to 1.2 mu m. Here we can obtain not only the mono decentralized microano phases, but also the different size and compact arrangement of the micro/ nano phases of the luminescent polymers. We employ a modified AFM (atomic force microscopy) tip to investigate the electrical properties of UTPS in which there are the mono microano phases of semiconductor polymer in matrix. The lateral force microscopy (LFM) confirmed the results of AFM. Photo-luminescences (PL) in the blend films of PCBET/PVK system and PCBET/PMPMA system were investigated. The results suggest that the suitable blend leads to the enhancement of PL emission of PCBET. (c) 2006 Elsevier B.V. All rights reserved.
机译:在本文中,我们表明,在超薄相分离(UTPS)概念下,可以通过物理方法获得尺寸受控的纳米相结构和共混聚合物的纳米厚度薄膜。研究了聚3-(2-(5-氯苯并三唑)乙基)噻吩(PCBET)/聚乙烯基咔唑(PVK)体系和PCBET / PMPMA(聚(对-(甲基)-苯基甲基丙烯酸)体系)的共混膜。在各种混合比例下,可以清楚地观察到相分离,分散相的平均尺寸在100 nm至1.2μm范围内,在这里我们不仅可以获得单分散的微/纳米相,而且还可以获得不同的尺寸和致密性发光聚合物的微/纳米相的排列我们采用改进的原子力显微镜(AFM)尖端来研究UTPS的电性能,其中基质中存在半导体聚合物的单微/纳米相。 (LFM)证实了AFM的结果。对PCBET / PVK系统和PCBET / PMPMA系统的共混膜中的光致发光(PL)进行了研究,结果表明合适的共混物可提高PCBET的PL发射。 c)2006年Elsevier BV A所有权利保留。

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