Nagamani S Anitha, Norikane Yasuo, Tamaoki Nobuyuki
Molecular Smart System Group, Nanotechnology Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 5, Higashi 1-1-1, Tsukuba, Ibaraki 305-8565, Japan.
J Org Chem. 2005 Nov 11;70(23):9304-13. doi: 10.1021/jo0513616.
[Structure: see text]. Molecular devices incorporating azobenzene units represent active components of smart systems, as they are capable of exhibiting photoregulated cooperative molecular motion. Herein, we describe the synthesis, X-ray crystal analysis, and photochemical and thermal studies of a xanthene based cyclic azobenzene dimer and its precursor. The trans-trans isomer of the azobenzene dimer upon photoirradiation transforms to the cis-cis isomer through an intermediate trans-cis isomer. The X-ray crystal structures of the trans-trans isomer (open) and the cis-cis isomer (closed) provide unambiguous proof for the hinge-like molecular motion in this class of molecules. The inferences drawn from photochemical and thermal studies shed light on the effect of varied substitution and cyclic structures on the different transitions. The lifetime of the cis-cis isomer is estimated to be 6.43 years, whereas the trans-cis isomer is short-lived (2.73 min) at 303 K. A rational explanation for the relative stability of the different isomers is derived from the isokinetic plot and theoretical calculations.
[结构:见正文]。包含偶氮苯单元的分子器件是智能系统的活性组件,因为它们能够展现光调节的协同分子运动。在此,我们描述了一种基于呫吨的环状偶氮苯二聚体及其前体的合成、X射线晶体分析以及光化学和热学研究。偶氮苯二聚体的反-反异构体在光照射下通过中间的反-顺异构体转变为顺-顺异构体。反-反异构体(开放)和顺-顺异构体(闭合)的X射线晶体结构为这类分子中的铰链状分子运动提供了明确证据。从光化学和热学研究得出的推论揭示了不同取代和环状结构对不同转变的影响。顺-顺异构体的寿命估计为6.43年,而反-顺异构体在303K时寿命较短(2.73分钟)。不同异构体相对稳定性的合理解释来自等动力学曲线和理论计算。