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首页> 外文期刊>ACS nano >Cerium Oxide Nanocrystal Embedded Bimodal Microniesoporous Nitrogen-Rich Carbon Nanospheres as Effective Sulfur Host for Lithium-Sulfur Batteries
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Cerium Oxide Nanocrystal Embedded Bimodal Microniesoporous Nitrogen-Rich Carbon Nanospheres as Effective Sulfur Host for Lithium-Sulfur Batteries

机译:氧化铈纳米晶体包埋的双峰微孔富含碳纳米氧化物作为锂 - 硫磺电池的有效硫磺宿主

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摘要

For developing lithium-sulfur (Li-S) batteries, it is critical to design advanced cathode materials with high sulfur loading/utilization ratios and strong binding interactions with sulfur species to prevent the dissolution of intermediate polysulfides. Here we report an effective sulfur host material prepared by implanting cerium oxide (CeO2) nanocrystals homogeneously into well-designed bimodal micromesoporous nitrogen-rich carbon (MMNC) nano spheres. With the high conductivity and abundant hierarchical pore structures, MMNC nanospheres can effectively store and entrap sulfur species. Moreover, the inserted polar and electrocatalytically active CeO2 nanocrystals and high nitrogen content of MMNC can synergistically solve the hurdle of the polysulfide dissolution and furthermore significantly promote stable redox activity. By combining these advantages, CeO2/MMNC-S cathodes with 1.4 mg cm(-2) sulfur exhibit high reversible capacities (1066 mAh g(-1) at 0.2 C after 200 cycles and 836 mAh g(-1) at 1.0 C after 500 cycles), good rate capability (737 mAh g(-1) at 2.0 C), and high cycle stability (721 mAh g(-1) at 2.0 C after 1000 cycles with a low capacity decay of 0.024% per cycle). Furthermore, a high and stable reversible capacity of 611 mAh g(-1) is achieved after cycling for 200 cycles with higher sulfur loading of 3.4 mg cm(-2).
机译:对于开发锂 - 硫(LI-S)电池,设计具有高硫加载/利用率的先进的阴极材料至关重要,以及与硫种类的强结合相互作用以防止中间多硫化物的溶解。在这里,我们通过将氧化铈(CeO 2)纳米晶体均匀地塑造成良好设计的双峰微孔氮碳(MMNC)纳米球制备了一种有效的硫宿主材料。具有高导电性和丰富的分层孔隙结构,MMNC纳米球可以有效地存储和捕获硫种类。此外,插入的极性和电催化活性CeO2纳米晶体和MMNC的高氮含量可以协同解决多硫化物溶解的障碍,此外显着促进稳定的氧化还原活性。通过结合这些优点,CEO2 / MMNC-S阴极,具有1.4mg cm(-2)硫在0.2℃下表现出高可逆容量(1066mAhg(-1),在200℃下为0.2℃,在1.0 c之后500次循环),良好的速率能力(2.0℃的737mAh(-1)),高循环稳定性(721mAhg(-1)在2.0℃下,1000次循环,每循环的低容量衰减为0.024%)。此外,在循环循环200周期后,实现了高且稳定的可逆容量,其循环较高3.4mg cm(-2)。

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