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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >General bis(fluorophenyl azide) photo-crosslinkers for conjugated and non-conjugated polyelectrolytes
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General bis(fluorophenyl azide) photo-crosslinkers for conjugated and non-conjugated polyelectrolytes

机译:用于共轭和非共轭聚电解质的一般双(氟苯乙酰叠氮化物)光交联剂

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摘要

Crosslinking of semiconductors is critical towards building heterostructures to enable flexibility in the design of devices. Bis(fluorophenyl azide)s (FPAs) and their sterically-substituted derivatives (sFPAs) have been demonstrated to be able to photo-crosslink semiconductor polymers upon deep-UV exposure, stabilizing their morphologies in devices. Here, we report the development of both UV (254 nm) and i-line (365 nm) photo-activatable FPA and sFPA - FPA80 and sFPA82 - both incorporating 3,5-bis(methylene)-1,1-dimethyl-4-piperidonium, a conjugation-extending bridge that also bears an ionic group. These materials are useful for generic photo-crosslinking of both conjugated and non-conjugated polyelectrolytes. Good thermal stability and solubility in polar organic solvents are obtained. Good film retention (>80%) can be achieved with a crosslinker loading of less than 10 wt/wt% for high-molecular polymers (M-w > 100k), superior to alkyl bisazides. The photo-crosslinking efficiency of ca. 20% in model polyelectrolytes is limited by the occlusion of ionic crosslinkers from the polymer matrix where the C-H insertion reaction occurs, hence suppressing photo-crosslinking efficiency.
机译:半导体交联对于建立异质结构至关重要,以实现设备的设计灵活性。已经证明了BIS(氟苯乙酰叠氮化物)S(FPA)及其间替代衍生物(SFPA)能够在深紫外线暴露时光交联半导体聚合物,稳定其在装置中的形态。在这里,我们报告了UV(254nm)和I-line(365nm)光活性FPA和SFPA - FPA80和SFPA82的开发 - 含有3,5-双(亚甲基)-1,1-二甲基-4 -piperidonium,也承受离子组的共轭延伸桥。这些材料对于共轭和非共轭聚电解质的通用光交联是有用的。得到良好的热稳定性和在极性有机溶剂中的溶解度。对于高分子聚合物(M-W> 100K),优于烷基苯基酰化物,可以使用小于10wt / wt%的交联剂负载来实现良好的膜保持(> 80%)。 CA的光交联效率。模型聚电解质中的20%受到离子交联剂来自聚合物基质的闭塞的限制,其中C-H插入反应发生,因此抑制了光交联效率。

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