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首页> 外文期刊>European Polymer Journal >Novel mesoporous high-performance films derived from polycyanurate networks containing high-boiling temperature liquids
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Novel mesoporous high-performance films derived from polycyanurate networks containing high-boiling temperature liquids

机译:衍生自含有高沸点液体的聚氰尿酸酯网络的新型介孔高性能薄膜

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Novel mesoporous polycyanurate (PCN) films were generated by polycyclotrimerization of dicyanate ester of bisphenol E in the presence of varying amounts of inert high-boiling temperature liquids, i.e. dimethyl phthalate or dibutyl phthalate, followed by their quantitative extraction after complete formation of PCN crosslinked frameworks. The chemical structures of precursory networks and resulting porous thermosetting films were confirmed by FTIR analysis and gel fraction determination. The porosity of the latter films was examined by SEM and DSC-based thermoporometry. Average pore diameters were found to be lower than 50 nm and pore volumes as high as 0.16 cm~3 g~(-1) were determined. The density values of porous samples were found to be lower than that of non-porous pure PCN synthesized as a model system, thus suggesting the occurrence of closed pore structures. Moreover, the thermal properties of PCN-based films were investigated by DSC and TGA. The high-boiling temperature liquids decreased their glass transition temperatures (T _g) and their degradation temperatures by acting as plasticizers. This plasticizing effect logically disappeared after removal of pore-forming phthalates from the networks: the T_g values of the mesoporous films were even higher than that of non-porous neat PCN, while their thermal stability turned out to be nearly identical to that of neat PCN.
机译:在不同量的惰性高沸点液体(即邻苯二甲酸二甲酯或邻苯二甲酸二丁酯)存在下,通过双酚E的双氰酸酯的多环三聚反应生成新颖的介孔聚氰尿酸酯(PCN)膜,然后在完全形成PCN交联骨架后进行定量萃取。通过FTIR分析和凝胶分数测定,确认了前体网络和所得多孔热固性薄膜的化学结构。通过基于SEM和DSC的热孔隙率法检查了后面的膜的孔隙率。发现平均孔径小于50 nm,确定的孔体积高达0.16 cm〜3 g〜(-1)。发现多孔样品的密度值低于作为模型系统合成的无孔纯PCN的密度值,因此表明存在封闭的孔结构。此外,通过DSC和TGA研究了基于PCN的薄膜的热性能。高沸点液体通过充当增塑剂来降低其玻璃化转变温度(T _g)和降解温度。从网络中除去成孔的邻苯二甲酸酯后,这种增塑作用在逻辑上消失了:中孔薄膜的T_g值甚至高于无孔纯净PCN的T_g值,而其热稳定性却几乎与纯净PCN相同。

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