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Polyoxometalate - conductive polymer composites for energy conversion, energy storage and nanostructured sensors

机译:多金属氧酸盐 - 导电聚合物复合材料,用于能量转换,储能和纳米结构传感器

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摘要

The exchange of electric charges between a chemical reaction centre and an external electrical circuit is critical for many real-life technologies. This perspective explores the "wiring" of highly redox-active molecular metal oxide anions, so-called polyoxometalates (POMs) to conductive organic polymers (CPs). The major synthetic approaches to these organic-inorganic hybrid materials are reviewed. Typical applications are highlighted, emphasizing the current bottlenecks in materials development. Utilization of the composites in the fields of energy conversion, electrochemical energy storage, sensors and nanoparticle "wiring" into conductive materials are discussed. The outlook section presents the authors' views on emerging fields of research where the combination of POMs and CPs can be expected to provide novel materials for groundbreaking new technologies. These include light-weight energy storage, high-sensitivity toxin sensors, artificial muscles, photoelectrochemical devices and components for fuel cells.
机译:化学反应中心和外部电路之间的电荷交换对于许多现实生活中的技术而言至关重要。该观点探讨了将高度氧化还原活性的分子金属氧化物阴离子(即所谓的多金属氧酸盐(POM))“连接”到导电有机聚合物(CP)上。综述了这些有机-无机杂化材料的主要合成方法。重点介绍了典型应用,强调了材料开发中的当前瓶颈。讨论了复合材料在能量转换,电化学储能,传感器和纳米颗粒“布线”到导电材料领域的应用。展望部分介绍了作者对新兴研究领域的看法,在这些新兴领域中,POM和CP的组合有望为突破性的新技术提供新颖的材料。这些包括轻量级能量存储,高灵敏度毒素传感器,人造肌肉,光电化学装置和燃料电池组件。

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