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首页> 外文期刊>RSC Advances >Few-layer WS2 nanosheets with oxygen-incorporated defect-sulphur entrapped by a hierarchical N, S co-doped graphene network towards advanced long-term lithium storage performances
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Few-layer WS2 nanosheets with oxygen-incorporated defect-sulphur entrapped by a hierarchical N, S co-doped graphene network towards advanced long-term lithium storage performances

机译:几层WS2纳米片具有由分层N,S共掺杂石墨烯网络捕获的氧气掺入的缺陷硫,朝向先进的长期锂存储性能

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Tungsten sulfide (WS _(2) ) with two-dimensional layered graphene-like structure as an anode for lithium-ion batteries (LIBs) has attracted large attention owing to its high theoretical capacity and unique S–W–S layer structure. However, it also always suffers from poor electrical conductivity and volume expansion during lithiation/delithiation process in the practical application. Herein, we demonstrate the successful synergistic regulation of both structural and electronic modulation by simultaneous oxygen incorporation in defect-sulphur WS _(2) nanosheets embedded into a conductive nitrogen and sulfur co-doped graphene framework (denoted as O -DS-WS _(2) /NSG), leading to dramatically enhanced lithium storage. Such a unique structure not only increases the accessible active sites for Li ~(+) and enhances the kinetics of ion/electron transport, but also relieves the volume effect of WS _(2) . Furthermore, the surface defects and heteroatom incorporation can effectively regulate the electronic structure, improve the intrinsic conductivity and offer more active sites. Consequently, electrochemical performance results demonstrate that the obtained O -DS-WS _(2) /NSG nanocomposites possess great application prospects in LIBs with high specific capacity, superior rate performance as well as excellent cycle stability.
机译:硫化根硫化物(WS _(2))具有二维层状石墨烯结构,作为锂离子电池(LIBS)的阳极(Libs)的阳极由于其高理论能力和独特的S-W-S层结构而引起了很大的关注。然而,在实际应用中,它还始终存在锂电层/脱脂过程中的导电性差和体积膨胀。在此,我们证明了通过在嵌入导电氮和硫共掺杂石墨烯框架中的缺陷 - 硫与硫含量的同时氧气掺入来成功协同调节结构和电子调节的缺陷 - 硫含量2)/ NSG),导致显着增强锂储存。这种独特的结构不仅增加了Li〜(+)的可接近的活动位点,并增强了离子/电子传输的动力学,而且减轻了WS_(2)的体积效应。此外,表面缺陷和杂原子掺入可以有效地调节电子结构,提高内在电导率并提供更多的活性位点。因此,电化学性能结果表明,所获得的O -DS-WS _(2)/ NSG纳米复合材料具有高特定容量,优异速率性能以及优异的循环稳定性的LIBS中具有很大的应用前景。

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