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Highly Resolved Morphology of Room-Temperature Columnar Liquid Crystals Derived from Triphenylene and Multialkynylbenzene Using Reconstructed Electron Density Maps

机译:使用重建的电子密度地图衍生自三苯基和多基因尼苯苯的室温圆柱液晶的高度分辨的形态

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This paper demonstrates highly resolved structure of the selfassembly of dyad and triads constituted from triphenylene (T) and multialkynylbenzene (M) units linked via flexible alkyl spacers (n). Resolved structures of these systems are based on reconstructed electron density maps derived from X-ray diffraction patterns. T-M compound (dyad) exhibits columnar hexagonal (Col_h) phase which is explained by its columnar layered structure. In contrast, T-M-T compounds (triads) with spacer lengths of n = 8 and 10 exhibited columnar oblique (Co_(obp)) mesophase whereas, the one with shortest spacer length, i. e., n = 6, showed a columnar oblique plastic (Col_(obp)) phase. We also found that molecules are interdigitated within themselves for compounds having longer spacer lengths (n = 8 and 10). However, a side by side packing is observed for the compound with shortest alkyl spacer (n = 6).
机译:本文展示了由Triphenylene(T)和通过柔性烷基垫片(N)链接的多苯基(T)和Multialkynylbenzene(M)单元(N)构成的Dyad和Triad的高度分辨结构。 这些系统的分辨结构基于从X射线衍射模式得出的重建的电子密度图。 T-M化合物(Dyad)表现出柱状六边形(COL_H)相,该相通过其柱状分层结构进行了解释。 相比之下,缝隙长度为n = 8和10的T-M-T化合物(三合会)表现出柱状斜(CO_(OBP))中间相,而隔离剂长度最短的the则表现出。 例如,n = 6,显示一个柱状塑料(col_(obp))相。 我们还发现,分子在自身内部相互插入,具有较长的间隔长度(n = 8和10)的化合物。 但是,对于最短的烷基间隔物(n = 6)的化合物,观察到并排堆积。

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