Department of Chemistry, The University of Burdwan, Golapbag, Burdwan 713104, West Bengal, India.
Department of Chemistry, Visva-Bharati University, Santiniketan 731235, West Bengal, India.
J Phys Chem B. 2021 Jul 8;125(26):7222-7230. doi: 10.1021/acs.jpcb.1c03890. Epub 2021 Jun 28.
We synthesized two types of donor-acceptor Stenhouse adducts (DASAs), a new type of photochromic molecules showing dual color in two different isomeric forms in solution phase, using Meldrum acid (DASA-Mel) and barbituric acid (DASA-Bar), along with a naphthalimide derivative to obtain interesting fluorescence properties. DASA-Mel was found to have fast photochromic conversion in comparison to DASA-Bar, evident from ultraviolet-visible (UV-vis) and fluorescence spectroscopic studies. The colored form of DASA-Mel was encapsulated inside the water-soluble Stoddart's blue box and became soluble in water much faster than DASA-Bar. Interestingly, the competitive encapsulation experiment showed that DASA-Mel was selectively encapsulated inside the blue box in water whereas DASA-Bar was mostly separated out from the solution after centrifugation, and this phenomenon was confirmed by H and DOSY NMR and mass spectroscopies. Moreover, we found through density functional theory (DFT) optimization that the open form of DASA-Mel was more stable during the encapsulation reaction in a water medium in comparison to DASA-Bar. The calculated binding energies of encapsulated DASA-Mel and DASA-Bar are -10.2 and -9.9 kcal/mol, respectively, clearly showing that the former is more stable by 0.3 kcal. Consequently, the organic macrocycle selectively separating one kind of DASA from a mixture by encapsulation in water is reported for the first time with experimental and theoretical support in the literature.
我们合成了两种类型的给体-受体 Stenhouse 加合物(DASAs),这是一种新型光致变色分子,在溶液相中以两种不同的异构形式呈现双颜色,使用 Meldrum 酸(DASA-Mel)和巴比妥酸(DASA-Bar)以及萘酰亚胺衍生物获得了有趣的荧光性质。与 DASA-Bar 相比,DASA-Mel 的光致变色转换速度更快,这可以从紫外可见(UV-vis)和荧光光谱研究中明显看出。DASA-Mel 的有色形式被包裹在水溶性 Stoddart 的蓝色盒子中,并且比 DASA-Bar 更快地在水中溶解。有趣的是,竞争包封实验表明,DASA-Mel 在水中选择性地被包裹在蓝色盒子内,而 DASA-Bar 在离心后大部分从溶液中分离出来,这一现象通过 1 H 和 DOSY NMR 和质谱得到证实。此外,我们通过密度泛函理论(DFT)优化发现,与 DASA-Bar 相比,在水介质中的包封反应中,DASA-Mel 的开环形式更稳定。计算得到的包封 DASA-Mel 和 DASA-Bar 的结合能分别为-10.2 和-9.9 kcal/mol,清楚地表明前者更稳定 0.3 kcal/mol。因此,首次在文献中报道了具有实验和理论支持的有机大环通过在水中包封选择性地从混合物中分离出一种 DASA。