Ma Jiani, Zhang Xiting, Basarić Nikola, Wan Peter, Phillips David Lee
Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of Ministry of Education, College of Chemistry and Materials Science, Northwest University, Xi'an, P. R. China.
Phys Chem Chem Phys. 2015 Apr 14;17(14):9205-11. doi: 10.1039/c4cp05061d. Epub 2015 Mar 11.
The excited state intramolecular proton transfer (ESIPT) reactions from a phenol (naphthol) to a carbon atom in the adjacent aromatic ring of 2-phenylphenol (1) and 2-phenyl-1-naphthol (4) are prototypical examples of intramolecular proton transfer not mediated by solvent molecules. Femtosecond time-resolved transient absorption (fs-TA) studies are conducted for the first time to directly probe the formation of quinone methide (QM) species generated from the ESIPT pathways of 1 and 4. Steady-state absorption experiments demonstrated 1 exists mainly in its non-deprotonated form in neat MeCN and in water-MeCN solutions. Observation of the phenolate form in water-containing solution (MeCN-H2O, 1 : 1, v : v) in fluorescence spectra demonstrates the occurrence of an ESPT reaction between 1 and the surrounding water molecules. In neat MeCN a transient species that absorbs around 520 nm was detected in fs-TA spectra and was assigned to the QM species formed by ESIPT to the 2'-position. This transient signal is strengthened in cyclohexane. In a water-MeCN solution, an additional transient species assigned to the QM species at the 4'-position of 1 was also detected that absorbs around 485 nm. Similar results for 4 were observed, with the absorbance of the transient species being more intense, which suggests there is more efficient production of the QM species from 4, consistent with quantum yields for deuterium exchange in the distal ring reported for these compounds.
从苯酚(萘酚)到2-苯基苯酚(1)和2-苯基-1-萘酚(4)相邻芳环中碳原子的激发态分子内质子转移(ESIPT)反应,是未由溶剂分子介导的分子内质子转移的典型例子。首次进行飞秒时间分辨瞬态吸收(fs-TA)研究,以直接探测由1和4的ESIPT途径产生的醌甲基化物(QM)物种的形成。稳态吸收实验表明,1在纯乙腈和水-乙腈溶液中主要以非去质子化形式存在。在荧光光谱中观察到含水溶液(乙腈-水,1∶1,v∶v)中的酚盐形式,证明了1与周围水分子之间发生了ESPT反应。在纯乙腈中,在fs-TA光谱中检测到一种在520nm左右吸收的瞬态物种,并将其归因于ESIPT到2'-位形成的QM物种。这种瞬态信号在环己烷中增强。在水-乙腈溶液中,还检测到另一种归因于1的4'-位QM物种的瞬态物种,其在485nm左右吸收。对4观察到了类似的结果,瞬态物种的吸光度更强,这表明从4中产生QM物种的效率更高,这与报道的这些化合物远端环中氘交换的量子产率一致。