首页> 外文期刊>Journal of analytical & applied pyrolysis >Functionalized graphene assisted the formation of mesocarbon microbeads with ultra-large size and loose microcrystalline structure from petroleum pitch for sodium-ion batteries anode
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Functionalized graphene assisted the formation of mesocarbon microbeads with ultra-large size and loose microcrystalline structure from petroleum pitch for sodium-ion batteries anode

机译:功能化石墨烯辅助钠离子电池阳极石油沥青形成超大尺寸、疏松微晶结构的中碳微珠

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摘要

It is a significant way to improve the sodium storage performance of mesocarbon microbeads (MCMBs) by adjusting the size and microcrystalline structure of it. A petroleum-based MCMBs with an ultra-large size and loose microcrystalline structure was synthesized by introducing functionalized graphene (FNG). The results indicate that the FNG can hinder the ordered stacking of planar aromatic macromolecules, prevent the coalescence and prolong the growth time of mesophase spheres. Mesophase spheres are easier to grow to an ultra-large size with looser microcrystalline structure. The MCMBs with a size of 250 mu m and a larger microcrystalline spacing can be achieved by adding 1.0 wt FNG during the polycondensation process. Such MCMBs deliver a competitive specific capacity of 123.4 mAh g-1 at a current density of 1.0 A g-1 with a high initial coulombic efficiency of 81.79 and an excellent stability of cycle performance when applied as anode of SIBs. This work provides a valuable and efficient method to enhance the SIB performance by designing the size and microcrystalline structure of MCMBs.
机译:通过调整介碳微珠(MCMBs)的尺寸和微晶结构,是提高其储钠性能的重要途径。通过引入功能化石墨烯(FNG),合成了一种具有超大尺寸和松散微晶结构的石油基MCMB。结果表明,FNG可以阻碍平面芳香族大分子的有序堆积,阻止聚结,延长中间相球的生长时间。中间相球体更容易生长到具有更松散微晶结构的超大尺寸。在缩聚过程中加入1.0 wt% FNG,可以实现尺寸为250 μm、微晶间距较大的MCMB。这种MCMB在1.0 A g-1的电流密度下提供123.4 mAh g-1的具有竞争力的比容量,初始库仑效率高达81.79%,在用作SIB的阳极时具有出色的循环性能稳定性。这项工作通过设计MCMB的尺寸和微晶结构,为提高SIB性能提供了一种有价值和有效的方法。

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