首页> 外文期刊>Advanced Functional Materials >Controlled Design of Well-Dispersed Ultrathin MoS_2 Nanosheets inside Hollow Carbon Skeleton: Toward Fast Potassium Storage by Constructing Spacious 'Houses' for K Ions
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Controlled Design of Well-Dispersed Ultrathin MoS_2 Nanosheets inside Hollow Carbon Skeleton: Toward Fast Potassium Storage by Constructing Spacious 'Houses' for K Ions

机译:空心碳骨架内部分散良好的超薄MoS_2纳米片的受控设计:通过为钾离子建造宽敞的“房屋”来实现钾的快速存储

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摘要

The large volume expansion induced by K+ intercalation is always a big challenge for designing high-performance electrode materials in potassium-ion storage system. Based on the idea that large-sized ions should accommodate big "houses," a facile-induced growth strategy is proposed to achieve the self-loading of MoS2 clusters inside a hollow tubular carbon skeleton (HTCS). Meantime, a step-by-step intercalation technology is employed to tune the interlayer distance and the layer number of MoS2. Based on the above, the ED-MoS2@CT hybrids are achieved by self-loading and anchoring the well-dispersed ultrathin MoS2 nanosheets on the inner surface of HTCSs. This unique compositing model not only alleviates the mechanical strain efficiently, but also provides spacious "roads" (hollow tubular carbon skeleton) and "houses" (interlayer expanded ultrathin MoS2 sheets) for fast K+ transition and storage. As an anode of potassium-ion batteries, the resultant ED-MoS2@CT electrode delivers a high specific capacity of 148.5 mAh g(-1) at 2 A g(-1) after 10 000 cycles with only 0.002% fading per cycle. The assembled ED-MoS2@CT//PC potassium-ion hybrid supercapacitor device shows a high energy density of 148 Wh kg(-1) at a power density of 965 W kg(-1), which is comparable to that of lithium-ion hybrid supercapacitors.
机译:在钾离子存储系统中设计高性能电极材料时,由K +插入引起的大体积膨胀始终是一个巨大的挑战。基于大型离子应容纳大型“房屋”的想法,提出了一种容易诱导的生长策略,以实现空心管状碳骨架(HTCS)内MoS2团簇的自负载。同时,采用逐步插层技术来调整MoS2的层间距离和层数。基于以上所述,ED-MoS2 @ CT杂化物是通过将负载良好分散的超薄MoS2纳米片材自载并锚定在HTCSs的内表面上而实现的。这种独特的复合模型不仅可以有效地缓解机械应力,而且还提供了宽敞的“道路”(空心管状碳骨架)和“房屋”(夹层扩展超薄MoS2薄板),可快速进行K +过渡和存储。作为钾离子电池的阳极,所得的ED-MoS2 @ CT电极经过1万次循环后,在2 A g(-1)时可提供148.5 mAh g(-1)的高比容量,每个循环仅衰减0.002%。组装的ED-MoS2 @ CT // PC钾离子混合超级电容器装置在965 W kg(-1)的功率密度下显示出148 Wh kg(-1)的高能量密度,与锂-锂的可比性高。离子混合超级电容器。

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