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Study of fullerene-containing epoxy membranes with tunable ultraviolet light-filtering properties

机译:具有可调紫外线滤光性能的富勒烯环氧膜的研究

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Fullerene-containing epoxy membranes with tunable ultraviolet (UV) optical properties were prepared by adding various amounts of aminated-fullerene derivatives into an epoxy resin/ethylenediamine system. The influences of content and chemical structure (e.g., amine kind and addition degree) of aminated-fullerene on the mechanical, optical and thermal properties of the cured epoxy membranes were investigated systematically. Dynamic mechanical analysis (DMA) indicates that the aminated-fullerene participates in the epoxy curing process and that a star-like crosslinking structure is formed. A higher cross-link density results in a higher glass transition temperature and storage module. The UV-Vis absorbance spectra reveal that the cutoff wavelength lambda(c) of the aminated-fullerene/epoxy membranes can be changed over almost the entire UV region simply by varying the fullerene derivative content. The charge-transfer complexes formed between the fullerene derivatives and the epoxy-amine complex may be responsible for the UV light-filtering behaviors. The result of thermogravimertic analyses (TGA) reveals that a higher amount (0.48 wt%) of fullerene derivative obviously leads to the better thermal stability of the cured epoxy membrane.
机译:通过将各种数量的胺化富勒烯衍生物添加到环氧树脂/乙二胺体系中,制得具有可调紫外(UV)光学性能的含富勒烯环氧膜。系统地研究了胺基富勒烯的含量和化学结构(例如胺种类和加成度)对固化环氧膜的机械,光学和热性能的影响。动态力学分析(DMA)表明胺基富勒烯参与了环氧固化过程,并形成了星形交联结构。较高的交联密度导致较高的玻璃化转变温度和存储模块。 UV-Vis吸收光谱表明,只需改变富勒烯衍生物含量,即可在几乎整个UV区域内改变胺化富勒烯/环氧膜的截止波长λ。富勒烯衍生物和环氧-胺配合物之间形成的电荷转移配合物可能是造成UV滤光行为的原因。热重分析(TGA)的结果表明,较高量的富勒烯衍生物(0.48wt%)显然导致固化的环氧膜的更好的热稳定性。

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