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首页> 外文期刊>Nanoscale >A dual-spatially-confined reservoir by packing micropores within dense graphene for long-life lithium/sulfur batteries
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A dual-spatially-confined reservoir by packing micropores within dense graphene for long-life lithium/sulfur batteries

机译:由包装dual-spatially-confined水库长寿命的微孔隙内密集的石墨烯

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In lithium/sulfur batteries, micropores could bring about strong interactions with polysulfides, but could not alleviate the partial polysulfide overflowing outside because of the volume expansion of the lithiated sulfur. A dual-spatially-confined reservoir for sulfur by wrapping microporous carbon with dense graphene, micro@meso-porous DSC (dual-spatial carbon), is synthesized to solve this issue. Such a structure is prepared through two distinctive methods: graphene promoted in situ hydrothermal carbonization of organics to grow micropores on itself, and liquid mediated drying of graphene hydrogel to form mesoporous graphene frameworks. In contrast to previously reported hierarchical carbon/S, the inner micropores are mainly responsible for loading sulfur, which could help confine its particle size, thus increasing the electrical/ionic conductivity and the utilization of sulfur, and restrain lithium polysulfide dissolution because of strong interaction with pore walls; while the outer mesopores act as another reservoir to stabilize the overflowed polysulfide and to enhance the Li+ transport. The S-micro@meso-porous DSC cathode exhibits better discharge capacity and cycling performance than S-microporous AC and S-micro@macro-porous DSC, i.e., 59% and 37% higher capacity remaining at 0.5 C than the latter two, respectively.
机译:在锂/硫电池、微孔隙带来强烈的相互作用多硫化合物,但不能缓解部分多硫化合物由于外满溢体积膨胀的lithiated硫磺。dual-spatially-confined水库为硫包装与密集的微孔碳石墨烯,micro@meso-porous DSC (dual-spatial碳)合成来解决这个问题。准备通过两个独特的方法:石墨烯原位水热有机物的碳化生长作用本身,和液体介导干燥的石墨烯水凝胶形成介孔石墨烯框架。与之前报道的等级制度碳/ S,内部微孔隙主要是负责装载硫,这可能帮助限制它的粒度,从而增加了电子/离子电导率和利用率硫磺,抑制多硫化锂解散,因为强烈的互动孔壁;另一个水库稳定溢出多硫化,提高李+运输。S-micro@meso-porous DSC阴极展品更好放电容量和循环性能比S-microporous AC和S-micro@macro-porous DSC,例如,更高的剩余容量在59%和37%分别为0.5摄氏度比后两个。

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