Minkovska Stela, Hadjichristov Georgi B, Neacsu Andreea, Chihaia Viorel, Fedorov Yury V
Institute of Catalysis, Bulgarian Academy of Sciences, Acad. G. Bonchev Str., Bl.11, 1113 Sofia, Bulgaria.
Georgi Nadjakov Institute of Solid State Physics, Bulgarian Academy of Sciences, 72 Tzarigradsko Chaussee Blvd., BG-1784 Sofia, Bulgaria.
ACS Omega. 2024 Jan 12;9(4):4144-4161. doi: 10.1021/acsomega.3c06434. eCollection 2024 Jan 30.
The stable and efficient photochromic and photoswitchable molecular systems designed from spirooxazines are of increasing scientific and practical interest because of their present and future applications in advanced technologies. Among these compounds, chelating spironaphthoxazines have received widespread attention due to their efficient optical response after complexation with some metal ions being of biomedical interest and environmental importance, as well as their good cycle performance and high reliability, especially by metal ion sensing. In this mini-review, we summarize our results in the design of novel photoswitchable chelating spironaphthoxazines with specific substituents in their naphthoxazine or indoline ring systems in view of recent progress in the development of such molecular systems and their applications as metal ion sensors. The design, synthesis methods, and photoresponse of such spirooxazine derivatives relevant to their applications, as well as quantum-chemical calculations for these compounds, are presented. Examples of various design concepts are discussed, such as sulfobutyl, hydroxyl, benzothiazolyl, or ester and carboxylic acid as substituents in the chelating spironaphthoxazine molecules. Further developments and improvements of this interesting and promising kind of molecular photoswitches are outlined.
由螺恶嗪设计的稳定高效的光致变色和光开关分子体系,因其在先进技术中的当前及未来应用,而受到越来越多的科学及实际关注。在这些化合物中,螯合螺萘并恶嗪由于与一些具有生物医学意义和环境重要性的金属离子络合后具有高效的光学响应,以及良好的循环性能和高可靠性,特别是在金属离子传感方面,受到了广泛关注。在本综述中,鉴于此类分子体系及其作为金属离子传感器应用的最新进展,我们总结了在萘并恶嗪或吲哚啉环体系中具有特定取代基的新型光开关螯合螺萘并恶嗪设计方面的成果。介绍了此类螺恶嗪衍生物与应用相关的设计、合成方法和光响应,以及这些化合物的量子化学计算。讨论了各种设计概念的实例,如磺酸丁酯、羟基、苯并噻唑基,或螯合螺萘并恶嗪分子中的酯基和羧基作为取代基。概述了这种有趣且有前景的分子光开关的进一步发展和改进。