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首页> 外文期刊>Crystal growth & design >Influence of Dissolution Status in Eutectic Mixtures on Crystallization Routes of Semiconductive Polyalkylthiophenes
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Influence of Dissolution Status in Eutectic Mixtures on Crystallization Routes of Semiconductive Polyalkylthiophenes

机译:共晶混合物中的溶解状态对半导体聚烷基噻吩结晶路径的影响

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Upon the dissolution of comb-like polyalkylthiophenes in the melt of a crystalline hexamethylbenzene compound, eutectic molten mixtures were prepared, which were found to involve disparate mixing statuses of polyalkylthiophenes. When more than 2 wt % of polyalkylthiophenes is mixed in molten solutions, metastable face-on lamellae of polyalkylthiophenes widely spread upon efficient eutectic solidification, instead of stable edge-on crystalline lamellae. Beyond a critical concentration of polyalkylthiophene, the association of board-like thiophene backbones into stripe-like micelles in, molten solutions was proposed as a preceding background. When the association tendency in molten mixture declines with the decrease of concentration or molecular weight, only edge-on lamellae are precipitated, Furthermore, as indicated by the structural analysis via electron diffraction patterns, the stacking of metastable face-on nanostructures is able to transform to stable edge-on crystals via collaborative rotation and lateral association of thiophene backbones. Nevertheless, with the attachment of a longer side chain, this structural evolution is hindered by enhanced kinetic barriers, and thus regular stacking of face-on nanostructures is able to persist and progress as an alternative organization route. For face-on nanostructures serving as a preordering state prior to the growth of edge-on crystals, annealing temperatures capable of initiating an overall structural transition within thin film have been explored and manifested as an indication of the metastability.
机译:当梳状聚烷基噻吩溶解在结晶的六甲基苯化合物的熔体中时,制备了低共熔混合物,发现该混合物涉及聚烷基噻吩的不同混合状态。当多于2wt%的聚烷基噻吩在熔融溶液中混合时,在有效的共晶凝固时,聚烷基噻吩的亚稳态面对层广泛地扩散,而不是稳定的边缘对晶层。提出了超过临界浓度的聚烷基噻吩,将板状噻吩主链结合成熔融溶液中的条状胶束的先决背景。当熔融混合物中的缔合趋势随着浓度或分子量的降低而下降时,仅边缘层上的片状沉淀,而且,如通过电子衍射图谱进行的结构分析所示,亚稳的表面层纳米结构的堆叠能够转变通过噻吩骨架的协同旋转和横向缔合获得稳定的边缘晶体。然而,由于较长的侧链的连接,这种结构的演变被增强的动力学屏障所阻碍,因此面对面的纳米结构的规则堆叠能够作为一种替代的组织途径得以持续和发展。对于在边缘上生长晶体之前用作预排序状态的表面上纳米结构,已经探究了能够引发薄膜内整体结构转变的退火温度,并将其显示为亚稳态的指示。

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