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Hybrid nanocomposite materials for energy storage and conversion applications

机译:混合纳米复合材料,用于能量存储和转换应用

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摘要

Functional Hybrid materials based on conducting polymers and inorganic photo-electroactive species provide a wealth of opportunities for the development of novel materials with improved properties. Polyoxometalates are one type of well-known inorganic species with most interesting photo-electrochemical activity. They are perfect models for nanometer-sized oxide quantum-dots both concerning structure, topology and electrochemical and photochemical properties. Yet, they have not been applied as materials because of their molecular nature (i.e., soluble in most solvents or electrolytes). In our group we have recently developed a research line dealing with the integration of these fascinating clusters in conducting polymer matrices to yield functional hybrid materials. Our past emphasis was on electroactivity for energy-storage applications but these materials can also be used, as it is shown here, for photoelectrochemical applications.
机译:基于导电聚合物和无机光电活性物质的功能性杂化材料为开发具有改进性能的新型材料提供了很多机会。多金属氧酸盐是一种具有最有趣的光电化学活性的众所周知的无机物。它们是有关结构,拓扑以及电化学和光化学性质的纳米级氧化物量子点的理想模型。然而,由于它们的分子性质(即,可溶于大多数溶剂或电解质),它们尚未用作材料。在我们的小组中,我们最近开发了一条研究线,致力于将这些引人入胜的簇整合到聚合物基体中,以生产功能性杂化材料。我们过去的重点是储能应用中的电活性,但如此处所示,这些材料也可用于光电化学应用。

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