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Liquid crystal character controlled by complementary discotic molecules mixtures: Columnar stacking type and mesophase temperature range 被引量:2
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作者 Yan Li Ming-Guang Li +4 位作者 Ya-Jun Su Jian-Gang Liu Yan-Chun Han Shi-Jun Zheng Li-Xiang Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2016年第3期475-480,共6页
In this work, the mesophase properties were tuned via mixing two discotic molecules with structural complementarity. Compared with the liquid crystalline hexakis(n-hexyloxy)triphenylene(H6TP)materials(columnar he... In this work, the mesophase properties were tuned via mixing two discotic molecules with structural complementarity. Compared with the liquid crystalline hexakis(n-hexyloxy)triphenylene(H6TP)materials(columnar hexagonal phase from 53 ℃ to 91 ℃), mesophase types as well as phase transition temperatures varied with the introduction of crystalline hexaazatriphenylene derivative(PBH)molecules. The introduction of less than 33% amount of PBH disrupted the columnar hexagonal phase formed by H6 TP remarkably, followed by the decreased clearing temperatures of liquid crystals. As the PBH amount was further increased, the destroyed columnar hexagonal phase was turned into the columnar rectangular phase, in which H6 TP and PBH molecules together formed the columnar mesophase. The formation of new mesophase contributed to the enlarged mesophase temperature(from44 ℃ to 144 ℃). We speculated that the alkyl chains interaction induced by the PBH component competed with the strong p–p stacking between H6 TP molecules, thus altering the liquid crystalline properties including mesophase types and phase transition temperatures. 展开更多
关键词 Alkyl chains packing Mesophase type Liquid crystals Phase transitions mixture
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