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Aerosol-assisted synthesis of porous and hollow carbon-carbon nanotube composite microspheres as sulfur host materials for high-performance Li-S batteries

机译:气溶胶辅助合成多孔和中空碳-碳纳米管复合微球作为高性能Li-S电池的硫基质材料

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Spherical carbon materials with porous and hollow structures have been developed as efficient sulfur host materials for Li-S batteries through various synthetic strategies. However, nanostructured carbon materials, generally synthesized by liquid solution processes, have disadvantages of low electrical conductivity as sulfur host materials. In this study, highly porous hollow carbon-carbon nanotubes (CNTs) composite microspheres, with a high loading rate of ultrafine S and high electrical conductivity, are designed and successfully synthesized by an aerosol-assisted process (ultrasonic spray pyrolysis) as efficient sulfur host materials. The carbon-CNTs composite microspheres, with a high sulfur loading rate of 70 wt%, exhibit superior electrochemical performance as a cathode compared to that of S-loaded CNTs balls for Li-S batteries. The S-loaded carbon-CNTs composite microspheres exhibit a discharge capacity of 697 mA h g(-1 )for the 250th cycle at a current density of 1.0C and show high reversible discharge capacities of 685 mA h g(-1), even at a high current density of 3.0C. The outstanding cycling and rate performance of S-loaded carbon-CNTs composite microspheres are attributed to the structural flexibility of the hollow structure, loading of ultrafine sulfur in micro- and mesopores of dextrin-derived carbon, and good electrical conductivity due to uniformly dispersed CNTs.
机译:通过各种合成策略,具有多孔和中空结构的球形碳材料已被开发为Li-S电池的有效硫主体材料。然而,通常通过液体溶液法合成的纳米结构碳材料具有作为硫主体材料的电导率低的缺点。在这项研究中,设计并通过气溶胶辅助工艺(超声波喷雾热解)成功地合成了具有高超细S负载率和高电导率的高孔隙度空心碳-碳纳米管(CNTs)复合微球,并将其作为有效的硫主体材料。与用于Li-S电池的S加载的CNTs球相比,具有70 wt%的高硫加载率的碳CNTs复合微球作为阴极表现出优异的电化学性能。载有S的碳-CNTs复合微球在1.0C的电流密度下在第250个循环中显示出697 mA hg(-1)的放电容量,并且即使在60℃下仍显示出685 mA hg(-1)的高可逆放电容量。 3.0C的高电流密度。 S负载碳-CNTs复合微球的出色循环和速率性能归因于中空结构的结构灵活性,糊精衍生碳的微孔和中孔中超细硫的负载以及由于碳纳米管均匀分散而具有的良好导电性。

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