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首页> 外文期刊>RSC Advances >Influence of the spacer length on the phase behaviors of mesogen-jacketed liquid crystalline polymers with a bulk side-chain
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Influence of the spacer length on the phase behaviors of mesogen-jacketed liquid crystalline polymers with a bulk side-chain

机译:间隔物长度对带有本体侧链的介晶夹层液晶聚合物的相行为的影响

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A series of mesogen-jacketed liquid-crystalline polymers (MJLCPs) containing two triphenylmethyl (Tr) units in the side chains, named poly{2,5-bis[(triphenylmethoxy-alkyl)oxycarbonyl]-styrenes} (denoted as Pv-m-Tr, m = 2, 4, 6, 8, 10, 12, which is the number of the methylene units between the terephthalate core and Tr moieties in the side chains), were designed and successfully synthesized via free radical polymerization. The chemical structures of the monomers were confirmed by H-1 NMR and mass spectrometry. The molecular characterizations of the polymers were performed with H-1 NMR, GPC and TG analysis. The phase structures and transition temperatures of the polymers were investigated by a combination of techniques including DSC, POM and 1D/2D WAXD. The experimental results revealed that all the polymers exhibited excellent thermal stabilities. The liquid crystalline (LC) phase structures and behaviors of the polymers were strongly dependent on the spacer length (m). With the increase of m, T-g of Pv-m-Tr decreased from 116.7 degrees C to 11.5 degrees C because of the alkyl plasticization. When m = 2, 4, 6, 8, 10, the Pv-m-Tr formed a stable columnar nematic (Phi(N)) phase above T-g. When m = 12, the Pv-12-Tr presented a re-entrant isotropic phase above T-g and a LC phase at higher temperature. This work provides a new case to understand the structure-property relationships of MJLCPs based on the alkyl spacer and bulk side-chain.
机译:一系列在侧链上包含两个三苯甲基(Tr)单元的介晶包覆液晶聚合物(MJLCP),称为聚{2,5-双[(三苯甲氧基-烷基)氧羰基]-苯乙烯}(表示为Pv-m设计并成功地通过自由基聚合合成了-Tr,m = 2、4、6、8、10、12,这是对苯二甲酸酯核与侧链中的Tr部分之间的亚甲基单元的数目。单体的化学结构通过H-1 NMR和质谱确认。用H-1 NMR,GPC和TG分析进行聚合物的分子表征。通过包括DSC,POM和1D / 2D WAXD在内的多种技术研究了聚合物的相结构和转变温度。实验结果表明,所有聚合物均表现出优异的热稳定性。聚合物的液晶(LC)相结构和行为在很大程度上取决于间隔物长度(m)。随着m的增加,由于烷基增塑,Pv-m-Tr的T-g从116.7℃降低至11.5℃。当m = 2、4、6、8、10时,Pv-m-Tr在T-g上方形成稳定的柱状向列(Phi(N))相。当m = 12时,Pv-12-Tr在T-g上方呈现凹角各向同性相,在更高温度下呈现LC相。这项工作提供了一个新的案例,以了解基于烷基间隔基和本体侧链的MJLCP的结构-属性关系。

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