首页> 外文期刊>Chemistry: A European journal >Designing Foldamer-Foldamer Interactions in Solution: The Roles of Helix Length and Terminus Functionality in Promoting the Self-Association of Aminoisobutyric Acid Oligomers
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Designing Foldamer-Foldamer Interactions in Solution: The Roles of Helix Length and Terminus Functionality in Promoting the Self-Association of Aminoisobutyric Acid Oligomers

机译:设计溶液中的Foldamer-Foldamer相互作用:螺旋长度和末端功能在促进氨基异丁酸低聚物的自缔合中的作用

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Macrocycles such as porphyrins and corroles have important functions in chemistry and biology, including light absorption for photosynthesis. Generation of near-IR (NIR)-absorbing dyes based on metal complexes of these macrocycles for mimicking natural photosynthesis still remains a challenging task. Herein, the syntheses of four new Ag-III corrolato complexes with differently substituted corrolato ligands are presented. A combination of structural, electrochemical, UV/Vis/NIR-EPR spectroelectrochemical, and DFT studies was used to decipher the geometric and electronic properties of these complexes in their various redox states. This combined approach established the neutral compounds as stable Ag-III complexes, and the one-electron reduced species of all the compounds as unusual, stable Ag-II complexes. The one-electron oxidized forms of two of the complexes display absorptions in the NIR region, and thus they are rare examples of mononuclear complexes of corroles that absorb in the NIR region. The appearance of this NIR band, which has mixed intraligand charge transfer/intraligand character, is strongly dependent on the substituents of the corrole rings. Hence, the present work revolves round the design principles for the generation of corrole-based NIR-absorbing dyes and shows the potential of corroles for stabilizing unusual metal oxidation states. These findings thus further contribute to the generation of functional metal complexes based on such macrocyclic ligands.
机译:大环化合物,如卟啉和花椰菜在化学和生物学中具有重要功能,包括光合作用的光吸收。基于这些大环的金属配合物来模拟自然光合作用的近红外(NIR)吸收染料的产生仍然是一项艰巨的任务。在此,提出了四种具有不同取代的corrolato配体的新的Ag-III corrolato配合物的合成。结构,电化学,UV / Vis / NIR-EPR光谱电化学和DFT研究的结合被用来破译这些配合物在各种氧化还原状态下的几何和电子性质。这种组合方法将中性化合物确定为稳定的Ag-III络合物,并将所有化合物的单电子还原物种确定为异常,稳定的Ag-II络合物。两种配合物的单电子氧化形式在NIR区域显示吸收,因此它们是在NIR区域吸收的酚单核配合物的罕见例子。具有混合的配体内部电荷转移/配体内部特征的该NIR带的出现强烈依赖于环的取代基。因此,目前的工作围绕着产生基于Corrole的NIR吸收染料的设计原理展开,并显示了Corroles用于稳定异常金属氧化态的潜力。因此,这些发现进一步有助于基于这种大环配体的功能性金属络合物的产生。

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