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首页> 外文期刊>Frontiers in Chemistry >The Electrochemical Performances of n-Type Extended Lattice Spaced Si Negative Electrodes for Lithium-Ion Batteries
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The Electrochemical Performances of n-Type Extended Lattice Spaced Si Negative Electrodes for Lithium-Ion Batteries

机译:锂离子电池n型扩展晶格间距Si负极的电化学性能

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摘要

The electrochemical performances of lithium-ion batteries with different lattice-spacing Si negative electrodes were investigated. To achieve a homogeneous distribution of impurities in the Si anodes, single crystalline Si wafers with As-dopant were ball-milled to form irregular and agglomerated micro-flakes with an average size of ~10 μm. The structural analysis proved that the As-doped Si negative materials retain the increased lattice constant, thus, keep the existence of the residual tensile stress of around 1.7 GPa compared with undoped Si anode. Electrochemical characterization showed that the As-doped Si anodes have lower discharge capacity, but Coulombic efficiency and capacity retention were improved in contrast with those of the undoped one. This improvement of electrochemical characteristics was attributed to the increased potential barrier on the side of Si anodes, inherited from the electronic and mechanical nature of Si materials doped with As. We believe that this study will guide us the way to optimize the electrochemical performances of LIBs with Si-based anodes.
机译:研究了不同晶格间距的硅负极锂离子电池的电化学性能。为了使杂质均匀分布在硅阳极中,将单晶硅片与砷掺杂剂进行球磨,以形成不规则且团聚的微片,平均尺寸约为10微米。结构分析表明,掺砷的负极材料保留了增加的晶格常数,因此与未掺杂的负极相比,残余拉应力保持在1.7 GPa左右。电化学表征表明,掺砷硅阳极的放电容量较低,但库仑效率和容量保持率与未掺杂的相比有所提高。电化学特性的这种改善归因于Si阳极一侧势垒的增加,这是从掺有As的Si材料的电子和机械性质继承而来的。我们相信,这项研究将指导我们优化具有Si基阳极的LIB的电化学性能的方法。

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