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Solvent‐Tuned Self‐Assembled Nanostructures of Chiral l/d‐Phenylalanine Derivatives of Protoporphyrin IX

机译:原卟啉的手性l / d-苯丙氨酸衍生物的溶剂调节自组装纳米结构

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AbstractProtoporphyrin IX is a naturally occurring amphiphilic porphyrin with a rigid hydrophobic nonpolar core and two polar propionic acid substitutions on the porphyrin ring. This molecule can be modified on the hydrophilic group, which can lead to strengthened π–π-stacking and spontaneous self-assembly into novel nanostructures. Herein, we use l- phenylalanine and d-phenylalanine to modify protoporphyrin IX, and use the two derivatives for solvophobic-controlled self-assembly. Both derivatives possess two important features: 1) the aromatic core of the porphyrin for dispersive interactions and 2) a chiral amino acid to maximize the influence of chirality on selfassembly. These derivatives lead to the formation of a variety of nanostructure morphologies, such as spheres, nanofibers, lamellar structures, and thread-like and spherical shells. Solution-based self-assembly was determined by UV/Vis, fluorescence, and circular dichroism spectroscopy, and the formed nanostructures were characterized by scanning electron microscopy (SEM). Such engineered porphyrin derivatives could have potential applications in energy transport and storage, supramolecular chemistry, materials science, and medicine.
机译:摘要原卟啉是一种天然的两亲性卟啉,具有刚性的疏水性非极性核心,在卟啉环上具有两个极性的丙酸取代基。该分子可以在亲水基团上进行修饰,这可以导致增强的π-π堆积和自发自组装成新的纳米结构。在这里,我们使用1-苯丙氨酸和d-苯丙氨酸修饰原卟啉IX,并使用这两种衍生物进行疏溶剂控制的自组装。两种衍生物都具有两个重要特征:1)卟啉的芳香核用于分散相互作用,2)手性氨基酸可最大程度地提高手性对自组装的影响。这些衍生物导致形成各种纳米结构形态,例如球形,纳米纤维,层状结构以及线状和球形壳。通过紫外/可见光,荧光和圆二色光谱确定基于溶液的自组装,并通过扫描电子显微镜(SEM)对形成的纳米结构进行表征。这样的工程卟啉衍生物可能在能量传输和存储,超分子化学,材料科学和医学中具有潜在的应用。

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