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Reversible constitutional switching between macrocycles and polymers induced by shape change in a dynamic covalent system

机译:动态共价体系中形状变化引起的大环与聚合物之间的可逆结构转换

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We report here the development of morphological switches as a new tool that can be used in constitutional dynamic chemistry (CDC) to control the constitution of the whole dynamic system. Molecules that have well-defined but switchable shapes were designed and synthesized. Their restrained conformational states were characterized both in the solid and in solution. The addition of metal ions induces a shape change through coordination; the shape generated was also fully investigated both in the solid and in solution. Such molecules constitute morphological switches, meaning that they can explore various shape states as a result of controlled well-defined shape changes triggered by an effector. These morphological switches were then integrated into covalent dynamic systems through formation of reversible imine bonds. Thermodynamic and kinetic analyses were performed in order to quantify the covalent equilibrium and to investigate the labile character of the covalent reversible link. It was then demonstrated that the molecular shape state of the morphological switches induces a well-defined constitution through covalent self-assembly, and that the system can be steered, quantitatively and reversibly without significant fatigue, between two different constitutional states, respectively, polymeric and macrocyclic assemblies. The dynamic covalent polymeric assemblies were analysed by DOSY NMR and small angle neutrons scattering (SANS). Their dynamic behaviour as a function of the concentration and the temperature was demonstrated and characterized.
机译:我们在这里报告形态学开关的发展,它是一种可用于构造动态化学(CDC)中以控制整个动态系统构造的新工具。设计并合成了形状明确但可切换的分子。在固体和溶液中都表征了它们的受约束构象状态。金属离子的添加​​通过配位引起形状变化;固体和溶液中生成的形状也得到了充分研究。此类分子构成形态转换,这意味着由于效应器触发的可控的明确定义的形状变化,它们可以探索各种形状状态。然后通过形成可逆的亚胺键将这些形态学开关整合到共价动态系统中。进行热力学和动力学分析以量化共价平衡并研究共价可逆连接的不稳定特征。然后证明了形态转换的分子形状状态通过共价自组装诱导了明确定义的结构,并且该系统可以在两个不同的结构状态(分别为聚合状态和聚合状态)之间定量,可逆地操纵,而没有明显的疲劳。大环程序集。通过DOSY NMR和小角中子散射(SANS)分析了动态共价聚合物组装体。证明并表征了其动态行为随浓度和温度的变化。

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