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Sequential uncaging with green light can be achieved by fine-tuning the structure of a dicyanocoumarin chromophore

机译:可以通过微调双氰基香豆素发色团的结构来实现绿光的顺序开盖

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摘要

We report the synthesis and photochemical properties of a series of dicyanocoumarinylmethyl (DEAdcCM)- and dicyanocoumarinylethyl (DEAdcCE)-based photocages of carboxylic acids and amines with absorption maximum around 500 nm. Photolysis studies with green light have demonstrated that the structure of the coumarin chromophore as well as the nature of the leaving group and the type of bond to be photocleaved (ester or carbamate) have a strong influence on the rate and efficiency of the uncaging process. These experimental observations were also supported by DFT calculations. Such differences in deprotection kinetics have been exploited to sequentially photolyze two dicyanocoumarin-caged model compounds (e.g. benzoic acid and ethylamine), and open the way to increasing the number of functional levels that can be addressed with light in a single system, particularly when combining dicyanocoumarin caging groups with other photocleavable protecting groups that remain intact under green light irradiation.
机译:我们报告了羧酸和胺类的最大吸收量约为500 nm的一系列基于二氰基香豆基甲基(DEAdcCM)和二氰基香豆基乙基(DEAdcCE)的合成和光化学性质。绿光的光解研究表明,香豆素生色团的结构以及离去基团的性质以及要进行光裂解的键的类型(酯或氨基甲酸酯)对开袋过程的速率和效率有很大影响。这些实验观察也得到DFT计算的支持。脱保护动力学的这种差异已被用于顺序光解两个双氰基香豆素笼罩的模型化合物(例如苯甲酸和乙胺),并开辟了增加光能在单个系统中解决的功能水平数量的途径,尤其是在组合使用时双氰基香豆素笼罩基团以及在绿光照射下保持完整的其他可光裂解保护基团。

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