Kopelman Roni A, Snyder Sean M, Frank Natia L
Department of Chemistry, University of Washington, Seattle, Washington 98195-1700, USA.
J Am Chem Soc. 2003 Nov 12;125(45):13684-5. doi: 10.1021/ja036306y.
Through the incorporation of a phenanthroline ligand into the oxazine moiety of photochromic spirooxazines, a series of photochromic spirooxazine-phenanthroline metal complexes have been synthesized, resulting in tunable and significantly increased photoresponsivities. Such systems are of interest for the investigation of multifunctional photochromic materials. These novel metal complexes retain their photochromic activity in the complexed state, leading to ligand binding in both the spirooxazine and the photomerocyanine forms during the photoconversion. A significant stabilization of the photomerocyanine form results from metal complexation, as indicated by the shift in thermal equilibrium values (KT = 0.06) upon metal complexation (KT = 0.6-1.2). Photoconversion occurs with first-order kinetics, suggesting the absence of an intermediate state. A third photostationary state is observed in these systems induced by visible irradiation of the thermal equilibrium state, leading to a three-state system. This new class of compounds provides the opportunity to investigate the synergy between changes in electronic structure associated with photoisomerization, and metal-centered functionality.
通过将菲咯啉配体引入光致变色螺恶嗪的恶嗪部分,合成了一系列光致变色螺恶嗪 - 菲咯啉金属配合物,从而实现了可调节且显著提高的光响应性。这类体系对于研究多功能光致变色材料具有重要意义。这些新型金属配合物在络合状态下保持其光致变色活性,导致在光转换过程中配体在螺恶嗪和光致变色花菁形式中均有结合。金属络合导致光致变色花菁形式显著稳定,这通过金属络合后热平衡值(KT = 0.06)的变化得以体现(未络合时KT = 0.6 - 1.2)。光转换以一级动力学发生,表明不存在中间态。在这些体系中,通过对热平衡态进行可见光照射可观察到第三种光稳态,从而形成三态体系。这类新型化合物为研究与光异构化相关的电子结构变化和以金属为中心的功能之间的协同作用提供了契机。