Yuasa Mana, Sumida Ryuki, Tanaka Yuya, Yoshizawa Michito
Laboratory for Chemistry and Life Science, Institute of Innovative Research, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama, 226-8503, Japan.
Chemistry. 2022 Feb 21;28(10):e202104101. doi: 10.1002/chem.202104101. Epub 2022 Jan 27.
To explore new cavity functions, we herein employed cis-trans stereoisomers with a N=N, C=C, or C=N unit as guest indicators for a polyaromatic capsule. Thanks to the rigid, spherical cavity with a diameter of ∼1 nm, azobenzene and stilbene derivatives are quantitatively encapsulated by the capsule with 100 % cis-selectivity in water. The isomerization of the cis-azo compound is suppressed against heat and light in the cavity, due to the confinement effect. Furthermore, C,N-diphenyl imine derivatives are quantitatively encapsulated by the capsule in water and adopt an otherwise unstable cis-form. The polyaromatic cavity suppresses the hydrolysis of the imines in water, even at elevated temperature, due to the shielding effect. Accordingly, the properties of the cis-trans isomers could be largely altered through supramolecular manipulation.
为了探索新的空腔功能,我们在此使用具有N=N、C=C或C=N单元的顺反立体异构体作为多芳族胶囊的客体指示剂。由于具有直径约为1 nm的刚性球形空腔,偶氮苯和芪衍生物在水中以100%的顺式选择性被该胶囊定量包封。由于受限效应,顺式偶氮化合物在空腔内对热和光的异构化受到抑制。此外,C,N-二苯基亚胺衍生物在水中被该胶囊定量包封,并呈现出原本不稳定的顺式构象。由于屏蔽效应,即使在高温下,多芳族空腔也能抑制亚胺在水中的水解。因此,通过超分子操纵,顺反异构体的性质可能会发生很大改变。