首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Charge-transfer complexes of dinuclear ruthenium compounds/polyoxometalates for multistate electrochromism covering ultraviolet, visible, and near-infrared region
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Charge-transfer complexes of dinuclear ruthenium compounds/polyoxometalates for multistate electrochromism covering ultraviolet, visible, and near-infrared region

机译:用于覆盖紫外线,可见和近红外区域的多态电致变色的二核钌化合物/多氧化硅酸酯的电荷转移复合物

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摘要

A series of novel charge-transfer electrostatic complexes between anionic polyoxometalates and cationic dinuclear ruthenium compounds have been prepared. An inter-molecular charge transfer from the electron-donor MCH-Ru to the electron-acceptor PMo12 occurs to generate two mixed-valence species of Ru-II/Ru-III and Mo-VI/Mo-V in the complex; consequently, complementation of their corresponding charge-transfer absorption bands can obtain a full spectrum covering ultraviolet, visible, and near-infrared regions in its ground state with no need for external stimuli. Diverse polyoxometalates with various structures and charge densities were investigated and results show that both energy matching and molecular structures play important roles in the charge transfer process. Amphiphilic dinuclear ruthenium molecules enable their corresponding complexes to form supramolecular assemblies, morphologies of which also correlate to efficiency of the charge transfer. In addition, smart ternary memories were realized by using these complexes with three electrochemical inputs and three optical outputs. These hybrid complexes are promising for applications in multistate electrochromic materials and devices with tunable photoelectric properties.
机译:已经制备了一系列新的电荷转移静电静电络合物,在阴离子多氧化酸盐和阳离子二核钌化合物之间制备。从电子给体MCH-Ru到电子受机PMO12的分子电荷转移发生,以产生复合物中的ru-II / Ru-III和Mo-VI / Mo-V的两个混合效价物种;因此,它们相应的电荷转移吸收带的互补可以在其地上获得紫外线,可见和近红外区域的完全光谱,而无需外部刺激。研究了具有各种结构和电荷密度的多种多氧化素,结果表明,能量匹配和分子结构在电荷转移过程中起重要作用。两亲性核钌分子使其相应的复合物形成超分子组件,其形态学也与电荷转移的效率相关。此外,通过使用具有三种电化学输入和三个光输出的这些复合物来实现智能三元存储器。这些杂种复合物对多岩电致变色材料和具有可调谐光电性能的装置的应用是有前途的。

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