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Functional mesoporous materials for energy applications: solar cells, fuel cells, and batteries

机译:对能源功能介孔材料应用:太阳能电池、燃料电池和电池

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This feature article presents recent progress made in the synthesis of functional ordered mesoporous materials and their application as high performance electrodes in dye-sensitized solar cells (DSCs) and quantum dot-sensitized solar cells (QDSCs), fuel cells, and Li-ion batteries. Ordered mesoporous materials have been mainly synthesized using two representative synthetic methods: the soft template and hard template methods. To overcome the limitations of these two methods, a new method called CASH was suggested. The CASH method combines the advantages of the soft and hard template methods by employing a diblock copolymer, PI-b-PEO, which contains a hydrophilic block and an sp~2-hybridized-carbon-containing hydrophobic block as a structure-directing agent. After discussing general techniques used in the synthesis of mesoporous materials, this article presents recent applications of mesoporous materials as electrodes in DSCs and QDSCs, fuel cells, and Li-ion batteries. The role of material properties and mesostructures in device performance is discussed in each case. The developed soft and hard template methods, along with the CASH method, allow control of the pore size, wall composition, and pore structure, providing insight into material design and optimization for better electrode performances in these types of energy conversion devices. This paper concludes with an outlook on future research directions to enable breakthroughs and overcome current limitations in this field.
机译:这篇文章中提出了最近的进展合成的功能有序介孔材料和他们的应用程序一样高色素增感太阳能电极的性能细胞(DSCs)和量子dot-sensitized太阳能细胞(QDSCs)、燃料电池和锂离子电池。有序介孔材料主要综合使用两种代表性的合成方法:软模板和硬模板方法。方法,称为现金提出的新方法。现金方法结合的优点方法采用软、硬模板PI-b-PEO diblock共聚物,包含一个亲水块和一个sp ~ 2-hybridized-carbon-containing疏水块作为一类代理。讨论一般技术中使用介孔材料的合成,这篇文章最近提出了介孔的应用程序材料作为电极DSCs QDSCs,燃料电池,锂离子电池。属性,在设备中构造在每种情况下讨论性能。发达的软、硬模板方法,与现金的方法,允许控制孔隙大小、壁成分和孔隙结构,提供深入的设计和材料为更好的电极性能优化这些类型的能量转换装置。论文总结与展望未来实现突破和研究方向克服当前的限制。

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