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卟啉-脯氨酸缀合物的立体特异性自组装过程:从结构特征和本体溶剂性质的影响到在立体选择性传感器系统中的应用。

Stereospecific Self-Assembly Processes of Porphyrin-Proline Conjugates: From the Effect of Structural Features and Bulk Solvent Properties to the Application in Stereoselective Sensor Systems.

机构信息

Department of Chemical Science and Technologies, Università di Roma Tor Vergata, Via della Ricerca Scientifica 1, 00133 Rome, Italy.

Department of Electronic Engineering, Università di Roma Tor Vergata, Viale del Politecnico 1, 00133 Rome, Italy.

出版信息

Int J Mol Sci. 2022 Dec 9;23(24):15587. doi: 10.3390/ijms232415587.

Abstract

Conjugating the porphyrin ring with an amino acid via amide linkage represents a straightforward way for conferring both amphiphilicity and chirality to the macrocycle. Proline residue is a good choice in this context since its conformational rigidity allows for porphyrin assembling where molecular chirality is efficiently transferred and amplified using properly honed aqueous environments. Herein, we describe the evolution of the studies carried out by our group to achieve chiral systems from some porphyrin-proline derivatives, both in solution and in the solid state. The discussion focuses on some fundamental aspects reflecting on the final molecular architectures obtained, which are related to the nature of the appended group (stereochemistry and charge), the presence of a metal ion coordinated to the porphyrin core and the bulk solvent properties. Indeed, fine-tuning the mentioned parameters enables the achievement of stereospecific structures with distinctive chiroptical and morphological features. Solid films based on these chiral systems were also obtained and their recognition abilities in gaseous and liquid phase are here described.

摘要

通过酰胺键将卟啉环与氨基酸连接,为大环赋予两亲性和手性提供了一种直接的方法。脯氨酸残基是这种情况下的一个很好的选择,因为它的构象刚性允许卟啉组装,在这种情况下,分子手性可以通过适当调整的水相环境有效地传递和放大。本文描述了我们小组为了从一些卟啉-脯氨酸衍生物中获得手性体系而进行的研究进展,这些体系既存在于溶液中,也存在于固态中。讨论集中在一些反映最终获得的分子结构的基本方面,这些方面与附加基团的性质(立体化学和电荷)、与卟啉核心配位的金属离子的存在以及主体溶剂的性质有关。事实上,精细调整这些参数可以实现具有独特手性光学和形态特征的立体特异性结构。还获得了基于这些手性体系的固态薄膜,并描述了它们在气相和液相中的识别能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95b7/9779260/e9a26b00c07e/ijms-23-15587-sch001.jpg

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