首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Preparation of a novel organic semiconductor composite consisting of a liquid crystalline semiconductor and crosslinked polymer and characterization of its charge carrier transport properties
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Preparation of a novel organic semiconductor composite consisting of a liquid crystalline semiconductor and crosslinked polymer and characterization of its charge carrier transport properties

机译:由液晶半导体和交联聚合物组成的新型有机半导体复合材料的制备及其载流子传输特性的表征

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We have fabricated a novel organic semiconductor composite consisting of a liquid crystalline semiconductor, i.e., 6-(4'-octylphenyl)-2-dodecyloxynaphthalene (8-PNP-O12), and a crosslinked polymer derived from 1,6- hexanediol diacrylate (HDA) by photopolymerization; its charge carrier transport properties were studied by the time-of-flight technique. The charge carrier transport in the resulting composites depended on polymerization conditions and on the nature of the charge. In the composite polymerized in the isotropic phase, the hole mobility was reduced by one order of magnitude when the HDA content exceeded more than 20 wt%; in a composite polymerized in the smectic mesophases, however, the hole mobility was unchanged irrespective of the monomer concentration up to 20 wt% compared with that of the pure 8-PNP-O12. On the other hand, negative charge carrier transport was significantly affected by photopolymerization even at a concentration of HDA of 5 wt%, irrespective of the mesophase in which the polymerization was carried out: the carrier mobility was significantly reduced and depended on the temperature, suggesting that chemical impurities formed in photopolymerization affect negative charge carrier transport. We discuss here the interesting charge carrier transport properties in relation to the micro-phase separated structures that characterize the liquid crystal and polymer composite. [References: 32]
机译:我们制造了一种新型的有机半导体复合材料,该复合材料由液晶半导体(即6-(4'-辛基苯基)-2-十二烷基氧基萘(8-PNP-O12))和衍生自1,6-己二醇二丙烯酸酯的交联聚合物组成( HDA)通过光聚合;通过飞行时间技术研究了其载流子的传输性质。所得复合物中电荷载流子的输送取决于聚合条件和电荷的性质。在各向同性相聚合的复合物中,当HDA含量超过20 wt%时,空穴迁移率降低一个数量级;然而,在以近晶中间相聚合的复合材料中,与纯8-PNP-O12相比,不管单体浓度高达20 wt%,空穴迁移率都没有变化。另一方面,即使在HDA浓度为5 wt%的情况下,无论进行聚合的中间相如何,负电荷载流子传输都会受到光聚合的显着影响:载流子迁移率显着降低并取决于温度,这表明光聚合反应中形成的化学杂质会影响负电荷载流子传输。我们在这里讨论与表征液晶和聚合物复合材料的微相分离结构有关的有趣的载流子传输性质。 [参考:32]

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