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首页> 外文期刊>Chemical engineering journal >Mesoporous graphitic carbon-TiO2 composite microspheres produced by a pilot-scale spray-drying process as an efficient sulfur host material for Li-S batteries
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Mesoporous graphitic carbon-TiO2 composite microspheres produced by a pilot-scale spray-drying process as an efficient sulfur host material for Li-S batteries

机译:通过先导喷雾干燥过程生产的中孔石墨碳-TiO2复合微球作为Li-S电池的有效硫磺主体材料

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Mesoporous graphitic carbon-TiO2 composite microspheres are fabricated by a facile process and used as an effective sulfur host material for Li-sulfur batteries (LSBs). Composite microspheres are several microns in size and with uniform size distributions that contained maltodextrin, iron nitrate, and TiO2 nanocrystals are formed using a pilot-scale spray-drying process, then transform into graphitic carbon-TiO2 composite microspheres with numerous empty nanovoids by a single post-treatment step and subsequent etching of metallic iron. The composite carbon microspheres not only have high pore volumes after the removal of metallic iron, providing sufficient spaces for the infiltration of sulfur, but also increase electronic conductivity in electrodes due to the graphitic carbon. Consequently, a high specific capacity of 516 mA h g(-1) at a current density of 5 C and a reversible capacity of 599 mA h g(-1) after 600 cycles at a current density of 1 C are achieved, indicating the excellent capability of the material for use in energy storage devices. The structure of the mesoporous graphitic carbon-TiO2 composite microspheres make them suitable for use as a host material in sulfur cathodes and can significantly improve the electrochemical performances of LSBs.
机译:中孔石墨碳 - TiO2复合微球通过容易工艺制造,并用作Li-硫电池(LSB)的有效硫磺主体材料。复合微球的尺寸为几微米,含有麦芽糖糊精,硝酸铁和TiO2纳米晶体的均匀尺寸分布,然后使用先导级喷雾干燥过程形成,然后用单一的空纳米液转化为石墨碳 - TiO2复合微球。后处理步骤和金属铁的后续蚀刻。复合碳微球不仅在去除金属铁后具有高孔体积,为硫的渗透提供了足够的空间,而且由于石墨碳,也增加了电极中的电子电导率。因此,在电流密度为1c的电流密度为5℃的电流密度为5c的516mA hg(-1)的高比容量,并且在电流密度为1c的1 c次数后,指示优异的能力用于储能设备的材料。中孔石墨碳 - TiO2复合微球的结构使其适用于硫阴极中的主体材料,并且可以显着提高LSB的电化学性能。

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