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Building blocks for oligospiroketal (OSK) rods and evaluation of their influence on rod rigidity

机译:寡螺旋体(OSK)杆的构建块及其对杆刚度的影响的评估

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摘要

We report on the synthesis of three new sleeves and their incorporation in OSK rods. The structures of these sleeves are based on neo-inositol, terephthalaldehyde diacetals, and indacene. To quantify the influence of the sleeves on rod rigidity, we applied the worm-like chain (WLC) model on the new rods and found that this approach is rather disappointing. As the chief cause of this result, we assume that the rigidity of typical molecular rods largely exceeds the rigidity of polymers, which were successfully described by the WLC model. Alternatively, we suggest quantifying the rigidity of molecular rods by fitting an empirical function on the end-to-end distance distribution curve obtained by MD simulations. After checking various function types, the Levy-Martin function proved to be most suitable for this purpose. On the basis of this function, we defined the Levy-Martin parameter and suggest using this parameter for the characterization of the rigidity of molecular rods.
机译:我们报告了三个新套筒的合成及其在OSK棒中的掺入。这些袖子的结构基于新肌醇,对苯二甲醛二缩醛和茚并二烯。为了量化套筒对杆刚度的影响,我们在新杆上应用了蠕虫状链(WLC)模型,发现这种方法令人失望。作为此结果的主要原因,我们假设典型分子棒的刚度大大超过了聚合物的刚度,这已由WLC模型成功描述。另外,我们建议通过在MD模拟获得的端到端距离分布曲线上拟合经验函数来量化分子棒的刚度。在检查了各种功能类型之后,事实证明Levy-Martin函数最适合此目的。基于此函数,我们定义了Levy-Martin参数,并建议使用此参数来表征分子棒的刚度。

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