Han Fu She, Higuchi Masayoshi, Kurth Dirk G
Functional Modules Group, Organic Nanomaterials Center, National Institute for Materials Science, 1-1 Namiki, Tsukuba, Ibaraki 305-0044, Japan.
J Am Chem Soc. 2008 Feb 13;130(6):2073-81. doi: 10.1021/ja710380a. Epub 2008 Jan 18.
This work presents several metallosupramolecular coordination polyelectrolytes (MEPEs) self-assembled from rigid, pi-conjugated, pyridine ring functionalized bisterpyridines and metal ions. The MEPEs are water-soluble and display different colors spanning the entire visible regions. Optical, electrochemical, and electrochromic properties of the obtained MEPEs are presented. The results show that the properties are profoundly affected by the nature of the substituents at the peripheral pyridine rings. Namely, MEPEs assembled from the electron-rich OMe group modified ligands exhibit high switching reversibility and stability and show a lower switching potential than the unsubstituted and electron-deficient Br-substituted analogues. The response times can be tuned either by the design of the ligands or by the choice of the metal ions to cover a broad time scale from under 1 s to several minutes. The optical memory is enhanced from 30 s to longer than 15 min as a comparison of unsubstituted and substituted MEPEs shows. Thus, the significantly enhanced stability and the ease of tuning the properties render this type of supramolecular assembly attractive as electrochromic materials for applications in a large variety of areas. Most importantly, we presented the structure-property relationships of MEPEs, which lays the groundwork for further design of new bisterpyridine-based metallosupramolecular functional materials.
这项工作展示了几种由刚性的、π共轭的、吡啶环功能化的双吡啶和金属离子自组装而成的金属超分子配位聚电解质(MEPEs)。这些MEPEs是水溶性的,并且在整个可见光区域呈现出不同的颜色。文中展示了所获得的MEPEs的光学、电化学和电致变色性质。结果表明,这些性质受到外围吡啶环上取代基性质的深刻影响。具体而言,由富电子的OMe基团修饰的配体组装而成的MEPEs表现出高的开关可逆性和稳定性,并且比未取代的和缺电子的Br取代类似物具有更低的开关电位。响应时间可以通过配体的设计或金属离子的选择来调节,以覆盖从不到1秒到几分钟的广泛时间范围。与未取代和取代的MEPEs的比较表明,光学记忆从30秒提高到超过15分钟。因此,显著增强的稳定性和易于调节的性质使得这种超分子组装作为电致变色材料在各种领域的应用中具有吸引力。最重要的是,我们展示了MEPEs的结构-性质关系,这为进一步设计新型双吡啶基金属超分子功能材料奠定了基础。