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Thermodynamic and electrochemical study of tailor-made crown ethers for redox-switchable (pseudo)rotaxanes

机译:用于氧化还原(伪)轮烷的量身定制的冠醚的热力学和电化学研究

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摘要

Crown ethers are common building blocks in supramolecular chemistry and are frequently applied as cation sensors or as subunits in synthetic molecular machines. Developing switchable and specifically designed crown ethers enables the implementation of function into molecular assemblies. Seven tailor-made redox-active crown ethers incorporating tetrathiafulvalene (TTF) or naphthalene diimide (NDI) as redox-switchable building blocks are described with regard to their potential to form redox-switchable rotaxanes. A combination of isothermal titration calorimetry and voltammetric techniques reveals correlations between the binding energies and redox-switching properties of the corresponding pseudorotaxanes with secondary ammonium ions. For two different weakly coordinating anions, a surprising relation between the enthalpic and entropic binding contributions of the pseudorotaxanes was discovered. These findings were applied to the synthesis of an NDI-[2]rotaxane, which retains similar spectroelectrochemical properties compared to the corresponding free macrocycle. The detailed understanding of the thermodynamic and electrochemical properties of the tailor-made crown ethers lays the foundation for the construction of new types of molecular redox switches with emergent properties.
机译:皇冠醚是超分子化学的常见结构块,经常用作合成分子机中的阳离子传感器或作为亚基。开发可切换和专门设计的冠醚使得能够将功能实施成分子组件。关于它们的电位,描述了一种掺入四硫甲戊二醇烯(TTF)或萘二酰亚胺(NDI)的七种定制的氧化还原活性冠醚作为氧化还原结构块,以形成氧化还原可切换的轮烷烷。等温滴定热量法和伏安型技术的组合揭示了与二次铵离子的相应伪横向的结合能和氧化还原性能之间的相关性。对于两种不同的弱协调阴离子,发现了初失的尖塔的焓和熵结合贡献之间的令人惊讶的关系。将这些发现用于合成Ndi-[2]旋霉素,其与相应的游离大环相比保留了类似的光谱电化学性质。详细了解量身定制的冠醚的热力学和电化学特性为具有紧急性质的新型分子氧化还原开关的构建奠定了基础。

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