首页> 外文期刊>Macromolecules >Phase identification in a series of liquid crystalline TPP polyethers and copolyethers having highly ordered mesophase structures. 6. Structure changes from smectic to columnar phases in a series of copolyethers containing odd and even numbers of met
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Phase identification in a series of liquid crystalline TPP polyethers and copolyethers having highly ordered mesophase structures. 6. Structure changes from smectic to columnar phases in a series of copolyethers containing odd and even numbers of met

机译:一系列具有高度有序中间相结构的液晶TPP聚醚和共聚醚的相识别。 6.在一系列含有奇数和偶数的甲基丙烯酸的共聚醚中,结构从近晶相转变为柱状相

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A series of liquid crystalline copolyethers has been synthesized from 1-(4-hydroxy-4 prime - biphenyl)-2-(4-hydroxyphenyl)propane and different α,ω-dibromoalkanes [coTPP(n/m)]. In this report, coTPPs having n = 5, 7, 9, 11 and m = 12 are studied, which represent copolyethers having both varying odd number and a fixed even number of methylene units. The compositions were fixed at an equal molar ratio (50/50). These coTPPs(n/m) show multiple phase transitions during cooling and heating in differential scanning calorimetry experiments. The undercooling dependence of these transitions is found to be small, indicating that these transitions are close to equilibrium. Although the coTPPs possess a high-temperature nematic (N) phase, the periodicity order along the chain direction is increasingly disturbed when the length of the odd-numbered methylene units decreases from n = 11 to 5. In the coTPPs(5/12, 7/12, and 9/12), wide-angle X-ray diffraction experiments at different temperatures show that, shortly after the N phase formation during cooling, the lateral molecular packing improves toward a hexagonal lattice, as evidenced by a gradual narrowing of the scattering halo. This process represents the possible existence of an exotic N phase, which serves as a precursor to the columnar (ΦH) phase. A further decrease in temperature leads to a ΦH phase having a long-range ordered, two-dimensional hexagonal lattice. In coTPP(11/12), the phase structures are categorized as highly ordered and tilted, smectic and smectic crystal phases, similar to homoTPPs, such as the smectic F (SF) and smectic crystal G (SCG) phases. An interesting observation is found for coTPP(9/12), wherein a structural change from the high-temperature ΦH phase to the low-temperature SF phase occurs. It can be proven that, upon heating, the well-defined layer structure disappears and the lateral packing remains hexagonal. The overall structural differences in this series of coTPPs between those of the columnar and highly ordered smectic phases are related to the disorders introduced into the layer structure by the dissimilarity of the methylene unit lengths in the comonomers.
机译:由1-(4-羟基-4伯-联苯)-2-(4-羟基苯基)丙烷和不同的α,ω-二溴烷烃[coTPP(n / m)]合成了一系列液晶共聚醚。在此报告中,研究了n = 5、7、9、11和m = 12的coTPP,它们代表了具有不同奇数和固定偶数亚甲基单元的共聚醚。将组合物以等摩尔比(50/50)固定。这些coTPP(n / m)在差示扫描量热法实验中的冷却和加热过程中显示出多个相变。发现这些过渡的过冷依赖性很小,表明这些过渡接近平衡。尽管coTPP具有高温向列(N)相,但是当奇数亚甲基单元的长度从n = 11减少到5时,沿链条方向的周期性顺序越来越混乱。在coTPPs(5/12, 7/12和9/12),在不同温度下进行的广角X射线衍射实验表明,冷却过程中形成N相后不久,横向分子堆积向六方晶格的方向改善,这可以通过逐渐缩小散射光晕。此过程表示可能存在异质N相,该异相N是柱状(ΦH)相的前体。温度的进一步降低导致ΦH相具有长程有序的二维六角形晶格。在coTPP(11/12)中,相结构被分类为高度有序和倾斜的近晶和近晶晶体相,类似于homoTPP,例如近晶F(SF)和近晶G(SCG)相。对于coTPP(9/12),发现了一个有趣的发现,其中发生了从高温ΦH相到低温SF相的结构变化。可以证明,加热后,清晰的层结构消失,侧向填充物保持六边形。柱状相和高度近晶相之间的一系列coTPP的总体结构差异与共聚单体中亚甲基单元长度的不相同而引入层结构中有关。

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