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Improved electrochemical activity of LiMnPO_4 by high-energy ball-milling

机译:高能球磨提高LiMnPO_4的电化学活性

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Olivine lithium manganese phosphate (LiMnPO_4) becomes research focus because of its high energy density and improved thermal stability. However, its application in lithium ion batteries suffers severely from poor electrochemical activity due to low conductivity and structural instability upon the charge and discharge process. By applying a high-energy ball-milling method we succeed in improving the capacity delivery and rate capability. LiMnP04 materials ball-milled without or with acetylene black are able to deliver a high capacity of 135 and 127mAhg~(-1), respectively, more than 50% greater than the pristine one. Particularly, the latter also shows an improved discharge plateau and stable cyclability. High-energy synchrotron radiation X-ray diffraction (XRD), scanning electron microscopy (SEM), Raman spectroscopy, laser particle analysis, and galvanostatic charge and discharge are employed to understand the effect of ball-milling on the LiMnPO_4 material.
机译:橄榄石锰酸锂锰(LiMnPO_4)由于其高能量密度和改善的热稳定性而成为研究重点。然而,由于其低电导率和在充电和放电过程中的结构不稳定性,其在锂离子电池中的应用严重遭受不良的电化学活性。通过应用高能球磨方法,我们成功地提高了产能交付和定额能力。球磨无或没有乙炔黑的LiMnPO4材料能够分别提供135和127mAhg〜(-1)的高容量,比原始的高出50%以上。特别地,后者还显示出改善的放电平稳性和稳定的可循环性。利用高能同步辐射X射线衍射(XRD),扫描电子显微镜(SEM),拉曼光谱,激光颗粒分析以及恒电流充放电来了解球磨对LiMnPO_4材料的影响。

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