Department of Organic Chemistry and Biochemistry, Ruđer Bošković Institute , Bijenička cesta 54, 10 000 Zagreb, Croatia.
Department of Chemistry, University of Victoria , Box 1700 STN CSC, Victoria, BC V8W 2Y2, Canada.
J Org Chem. 2017 Dec 1;82(23):12554-12568. doi: 10.1021/acs.joc.7b02314. Epub 2017 Nov 20.
ortho-, meta- and para-Hydroxymethylaniline methyl ethers 3-5-OMe and acetyl derivatives 3-5-OAc were investigated as potential photocages for alcohols and carboxylic acids, respectively. The measurements of photohydrolysis efficiency showed that the decaging from ortho- and meta-derivatives takes place efficiently in aqueous solution, but not for the para-derivatives. Contrary to previous reports, we show that the meta-derivatives are better photocages for alcohols, whereas ortho-derivatives are better protective groups for carboxylic acids. The observed differences were fully disclosed by mechanistic studies involving fluorescence measurements and laser flash photolysis (LFP). Photoheterolysis for the para-derivatives does not take place, whereas both meta- and ortho-derivatives undergo heterolysis and afford the corresponding carbocations 3-C and 4-C. The ortho-carbocation 4-o-C was detected by LFP in aqueous solution (λ = 410 nm, τ ≈ 90 μs). Moreover, spectroscopic measurements for the meta-acetyl derivative 3-m-OAC indicated the formation of cation in the excited state. The application of an ortho-aniline derivative as a protective group was demonstrated by synthesizing several derivatives of carboxylic acids. In all cases, the photochemical deprotection was accomplished in high yields (>80%). This mechanistic study fully rationalized the photochemistry of aniline photocages which is important for the design of new photocages and has potential for synthetic, biological, and medicinal applications.
邻位、间位和对位羟甲基苯胺甲醚 3-5-OMe 和乙酰衍生物 3-5-OAc 分别被研究作为醇和羧酸的潜在光解笼。光水解效率的测量表明,邻位和间位衍生物在水溶液中有效地进行脱笼,但对位衍生物则不行。与之前的报道相反,我们表明间位衍生物是更好的醇光解笼,而邻位衍生物则是更好的羧酸保护基。通过涉及荧光测量和激光闪光光解 (LFP) 的机理研究充分揭示了观察到的差异。对位衍生物的光杂解不发生,而间位和邻位衍生物都经历杂解并生成相应的碳正离子 3-C 和 4-C。邻位碳正离子 4-o-C 在水溶液中通过 LFP 检测到(λ = 410nm,τ≈90μs)。此外,对位乙酰衍生物 3-m-OAC 的光谱测量表明在激发态形成了阳离子。邻位苯胺衍生物作为保护基的应用通过合成几种羧酸衍生物得到了证明。在所有情况下,光化学脱保护都以高产率(>80%)完成。这项机理研究充分合理化了苯胺光解笼的光化学,这对于设计新型光解笼具有重要意义,并具有合成、生物和医学应用的潜力。