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High-Capacity Te Anode Confined in Microporous Carbon for Long-Life Na-Ion Batteries

机译:封闭在微孔碳中的高容量Te阳极,用于长寿命钠离子电池

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摘要

Sodium-ion batteries (SIBs) have attracted considerable attention as an alternative energy-storage technology in recent years. Developing advanced sodium storage anode materials With appropriate working potential, high capacity, and good cycling performance is very important. Herein, we demonstrate a nanostructured tellurium@carbon (nano-Te@C) composite by confining nano-Te molecules in the space of carbon micropores as an attractive anode material for SIBs. The nano-Te@C anode presents an appropriate redox potential in the range of 1.05-1.35 V (vs Na+/Na), which avoids the Na dendrite problem and achieves a high reversible capacity of 410 mA h g(-1) on the basis of a two-electron redox reaction mechanism. Notably, the nano-Te@C exhibits an admirable long-term cycling stability with a high capacity retention of 90% for 1000 cycles (i.e., ultralow capacity decay of 0.01% per cycle). The excellent electrochemical property of nano-Te@C benefits from the high electroactivity from the nanostructure design and the effective confinement of the microporous carbon host. In addition, a Na-ion full cell by Using nano-Te@C as anode and Na2/3Ni1/3Mn2/3O2 as cathode is demonstrated for the first time and exhibits a remarkable capacity retention up to 95% after 150 cycles. The results put new insights for the development of advanced SIBs with long-cycle lifespan.
机译:近年来,作为替代性储能技术的钠离子电池(SIB)引起了相当大的关注。开发具有适当工作潜力,高容量和良好循环性能的高级钠存储阳极材料非常重要。在这里,我们通过将纳米Te分子限制在碳微孔的空间中作为一种SIB的有吸引力的阳极材料,展示了一种纳米结构的碲@碳(nano-Te @ C)复合材料。纳米Te @ C阳极在1.05-1.35 V(vs Na + / Na)范围内提供合适的氧化还原电势,避免了Na枝晶问题,并在410 mA hg(-1)的基础上实现了高可逆容量二电子氧化还原反应机理。值得注意的是,纳米Te @ C表现出令人钦佩的长期循环稳定性,在1000次循环中具有90%的高容量保持率(即每循环0.01%的超低容量衰减)。纳米Te @ C的优异的电化学性能得益于纳米结构设计的高电活性和对微孔碳主体的有效限制。此外,首次展示了以纳米Te @ C为阳极,Na2 / 3Ni1 / 3Mn2 / 3O2为阴极的Na离子全电池,并在150次循环后显示出高达95%的显着容量保持率。这些结果为开发具有较长使用寿命的高级SIB提供了新的见识。

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