UMR 6226 CNRS-Université de Rennes 1, Sciences Chimiques de Rennes, Campus de Beaulieu, 35042 Rennes, France.
Phys Chem Chem Phys. 2012 Feb 28;14(8):2599-605. doi: 10.1039/c2cp23333a. Epub 2012 Jan 25.
The photoinduced ring-closure/ring-opening reactions of a series of bis-dithienylethene derivatives, as free ligands and Zn(II)-complexes, are investigated by resorting to theoretical (time-dependent density functional theory) and kinetic analyses in solution. The originality of the system stems from the tunability of the photoreaction quantum yields and conversion yields as a function of the electronic structure. The latter could be varied by modifying the electron-donating character of the DTE-end substituents L(a-d) (o,o) (a, D = H; b, D = OMe; c, D = NMe(2); d, D = NBu(2)) and/or the Lewis character of the metal ion center L(a-d)ZnX(2) (o,o) (L(a-c), X = OAc; L(d), X = Cl). The orbital description of the doubly-open form (o,o) and half-closed form (o,c) predicts that double closure to the form (c,c) would occur using UV irradiation. Photokinetic studies on the complete series demonstrate that photocyclization proceeds following a sequential ring closure mechanism. They clearly point out distinct quantum yields for the first and second ring closures, the latter being characterized by a significantly lower value. Dramatic decrease in both the quantum yields of the ring-closure and ring-opening processes is demonstrated for the complex L(d)ZnCl(2) exhibiting the strongest charge-transfer character in the series investigated. These studies show that this series of DTE derivatives provides an efficient strategy to tune the photochromic properties through the combination of the electron-donor and electron-acceptor (D-A) groups.
一系列双二噻吩乙烯衍生物作为游离配体和 Zn(II)配合物的光诱导环闭/环开反应通过理论(含时密度泛函理论)和动力学分析在溶液中进行了研究。该体系的新颖之处在于光反应量子产率和转化率作为电子结构的函数的可调性。后者可以通过改变 DTE 端基取代基 L(a-d)(o,o)(a,D = H;b,D = OMe;c,D = NMe(2);d,D = NBu(2))的给电子特性和/或金属离子中心 L(a-d)ZnX(2)(o,o)(L(a-c),X = OAc;L(d),X = Cl)的路易斯特性来改变。双开形式(o,o)和半开形式(o,c)的轨道描述预测,使用 UV 辐射会发生双闭环到形式(c,c)。对完整系列的光动力学研究表明,光环化遵循顺序环封闭机制进行。它们清楚地指出了第一个和第二个环封闭的量子产率明显不同,后者的量子产率明显较低。对于在研究的系列中表现出最强电荷转移特性的配合物 L(d)ZnCl(2),环闭和开环过程的量子产率都明显降低。这些研究表明,该系列 DTE 衍生物通过组合供电子和吸电子(D-A)基团,为调节光致变色性能提供了一种有效的策略。