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多杂原子掺杂纳米石墨烯:通过形成电子供体-受体结构增强光敏化能力。

Multi-heteroatom doped nanographenes: enhancing photosensitization capacity by forming an electron donor-acceptor architecture.

作者信息

Li Ranran, Ma Bin, Li Meng, Wang Dan, Liu Peng, An Peng

机构信息

School of Chemical Science and Technology Yunnan University Kunming 650091 P. R. China.

Key Laboratory of Medicinal Chemistry for Natural Resource, Ministry of Education, Yunnan University Kunming 650091 P. R. China

出版信息

Chem Sci. 2024 Jun 17;15(29):11408-11417. doi: 10.1039/d4sc02416h. eCollection 2024 Jul 24.

Abstract

Systematically tuning and optimizing the properties of synthetic nanographenes (NGs) is particularly important for NG applications in diverse areas. Herein, by devising novel electron donor-acceptor (D-A) type structures, we reported a series of multi-heteroatom-doped NGs possessing an electron-rich chalcogen and electron-deficient pyrimidine or pyrimidinium rings. Comprehensive experimental and theoretical investigations revealed significantly different physical, optical, and energetic properties compared to the non-doped HBC or chalcogen-doped, non-D-A analogues. Some intriguing properties of the new NGs such as unique electrostatically oriented molecular stacking, red-shifted optical spectra, solvatochromism, and enhanced triplet excitons were observed due to the formation of the D-A electron pattern. More importantly, these D-A type structures can serve as photosensitizers to generate efficiently reactive-oxygen species (ROS), and the structure-related photosensitization capacity that strengthens the electron transfer (ET) process leads to significantly enhanced ROS which was revealed by experimental and calculated studies. As a result, the cell-based photodynamic therapy (PDT) indicated that the cationic NG 1-Me is a robust photosensitizer with excellent water-solubility and biocompatibility.

摘要

系统地调整和优化合成纳米石墨烯(NGs)的性质对于其在不同领域的应用尤为重要。在此,通过设计新型电子供体-受体(D-A)型结构,我们报道了一系列具有富电子硫族元素和缺电子嘧啶或嘧啶鎓环的多杂原子掺杂NGs。全面的实验和理论研究表明,与未掺杂的HBC或硫族元素掺杂的非D-A类似物相比,其物理、光学和能量性质存在显著差异。由于D-A电子模式的形成,观察到了新NGs的一些有趣性质,如独特的静电取向分子堆积、红移光谱、溶剂化变色和增强的三线态激子。更重要的是,这些D-A型结构可作为光敏剂有效产生活性氧(ROS),实验和计算研究表明,与结构相关的增强电子转移(ET)过程的光敏化能力导致ROS显著增强。结果,基于细胞的光动力疗法(PDT)表明阳离子NG 1-Me是一种具有优异水溶性和生物相容性的强大光敏剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/291a/11268484/9de3d97cf89b/d4sc02416h-f1.jpg

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