Supramolecular Science Laboratory, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
Molecules. 2011 Feb 14;16(2):1603-24. doi: 10.3390/molecules16021603.
Optically active binaphthyl-azobenezene cyclic dyads were synthesized to develop a photochromic switching molecule. Azobenezene moieties were cis-trans isomerized by photoirradiation. As a reflection of the structural change, the specific optical rotation and circular dichroism underwent significant shifts. Under certain conditions, the positive-negative and zero-positive (or zero-negative) signals were reversed. Optical rotation may potentially be applied in noise-cancelling nondestructive photoswiches. The conformations were studied by experimental and theoretical methods. The results revealed that the helical chirality, (P) or (M), of the cis-azobenzene moiety was induced by intramolecular axial chirality. The twist direction depended on the axial chirality as well as the azobenzene linkage position to the binaphthyls, but was independent of the identity of substituted groups. 2,2'-Linked-(R)-binaphthyl was found to induce cis-(P)-azobenzene, whereas symmetrically 7,7'-linked-(R)-binaphthyl was found to induce cis-(M)-azobenzene.
手性联萘-偶氮苯环二聚体被合成以开发光致变色开关分子。偶氮苯部分通过光照射进行顺反异构化。作为结构变化的反映,旋光度和圆二色性发生了显著的位移。在某些条件下,正负和零正(或零负)信号发生反转。旋光可能潜在地应用于噪声消除的非破坏性光开关。通过实验和理论方法研究了构象。结果表明,顺式偶氮苯部分的螺旋手性(P)或(M)是由分子内轴向手性诱导的。扭转方向取决于轴向手性以及偶氮苯与联萘的连接位置,但与取代基的身份无关。发现 2,2'-连接的(R)-联萘诱导顺式(P)-偶氮苯,而对称地 7,7'-连接的(R)-联萘诱导顺式(M)-偶氮苯。