Nishijima Moe, Mutoh Katsuya, Shimada Rintaro, Sakamoto Akira, Abe Jiro
Department of Chemistry, Aoyama Gakuin University, 5-10-1 Fuchinobe, Chuo-ku, Sagamihara, Kanagawa 252-5258, Japan.
J Am Chem Soc. 2022 Sep 21;144(37):17186-17197. doi: 10.1021/jacs.2c07562. Epub 2022 Sep 7.
We propose a rational method for evaluating the diradical character of the photochromic phenoxyl-imidazolyl radical complex (PIC) derivatives based on their radical-radical coupling reaction rates. PIC consists of an imidazole ring, a phenoxyl ring, and a bridging unit that structurally connects them. The C-N bond formed between the imidazole and phenoxyl rings can be dissociated photochemically in a homolytic manner. The photochromism of PIC differs significantly from other photochromic molecules in that the transient colored open-ring isomer has a diradical character. The colored open-ring isomer returns promptly to the initial colorless closed-ring isomer by the intramolecular radical recombination reaction. By changing the aromaticity and substitution position of the bridging unit, it is possible to control the degree of contribution of the open-shell diradical and closed-shell quinoidal structures to the open-ring isomer. Systematic investigation of the photochromic reactions of several PIC derivatives revealed that the half-life of the open-ring isomers reflects the diradical character. Thus, the radical recombination reaction rate of the open-ring isomer of the PIC derivatives is an excellent parameter of the diradical character.
我们提出了一种基于光致变色苯氧基 - 咪唑基自由基复合物(PIC)衍生物的自由基 - 自由基偶联反应速率来评估其二自由基特性的合理方法。PIC由一个咪唑环、一个苯氧基环以及在结构上连接它们的桥连单元组成。咪唑环和苯氧基环之间形成的C - N键能够以均裂方式发生光化学解离。PIC的光致变色与其他光致变色分子有显著不同,在于瞬态显色开环异构体具有二自由基特性。通过分子内自由基重组反应,显色开环异构体迅速恢复为初始的无色闭环异构体。通过改变桥连单元的芳香性和取代位置,可以控制开壳二自由基和闭壳醌式结构对开环异构体的贡献程度。对几种PIC衍生物的光致变色反应进行系统研究发现,开环异构体的半衰期反映了二自由基特性。因此,PIC衍生物开环异构体的自由基重组反应速率是二自由基特性的一个极佳参数。