首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Improvement of the electrochemical performance of LiMn_2O_4 cathode active material by lithium borosilicate (LBS) surface coating for lithium-ion batteriesHalil Sahan*, Hiiseyin Goktepe, Saban Patat, Ahmet OlgenDepartment of Chemistry, Faculty of Science, Erciyes University, Tolas St., 38039 Kayseri, Turkey
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Improvement of the electrochemical performance of LiMn_2O_4 cathode active material by lithium borosilicate (LBS) surface coating for lithium-ion batteriesHalil Sahan*, Hiiseyin Goktepe, Saban Patat, Ahmet OlgenDepartment of Chemistry, Faculty of Science, Erciyes University, Tolas St., 38039 Kayseri, Turkey

机译:锂离子电池的硼硅酸锂(LBS)表面涂层可改善LiMn_2O_4正极活性物质的电化学性能哈利勒·萨汉(Halil Sahan)*,海森·高克特佩(Hiiseyin Goktepe),萨班·帕塔特(Saban Patat),艾哈迈德·奥尔根(Ahmet Olgen)化学系,埃尔西耶斯大学理学院,托拉斯街38039号, 火鸡

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摘要

The LBS coating on the surface of spinel LiMn_2O_4 powder was carried out using the solid-state method, followed by heating at 425 °C for 5 h in air. The powder X-ray diffraction pattern of the LBS-coated spinel LiMn_2O_4 showed that the LBS coating medium was not incorporated in the spinel bulk structure. The SEM result showed that the LBS coating particles were homogeneously distributed on the surface of the LiMn_2O_4 powder particles. The effect of the lithium borosilicate (LBS) coating on the charge-discharge cycling performance of spinel powder (LiMn_2O_4) was studied in the range of 3.5-4.5 V at 1C. The electrochemical results showed that LBS-coated spinel exhibited a more stable cycle performance than bare spinel. The capacity retention of LBS-coated spinel was more than 93.3% after 70 cycles at room temperature, which was maintained at 71.6% after 70 cycles at 55 °C. The improvement of electrochemical performance may be attributed to suppression of Mn2* dissolution into the electrolyte via the LBS glass layer.
机译:使用固态方法在尖晶石LiMn_2O_4粉末的表面进行LBS涂层,然后在空气中于425°C加热5 h。 LBS涂覆的尖晶石LiMn_2O_4的粉末X射线衍射图表明,LBS涂覆介质未掺入尖晶石块状结构中。 SEM结果表明,LBS涂层颗粒均匀分布在LiMn_2O_4粉末颗粒的表面。研究了硼硅酸锂(LBS)涂层对尖晶石粉(LiMn_2O_4)的充放电循环性能的影响,温度范围为1°C在3.5-4.5 V之间。电化学结果表明,涂​​覆LBS的尖晶石比裸露的尖晶石具有更稳定的循环性能。在室温下进行70次循环后,LBS涂层尖晶石的容量保持率超过93.3%,在55°C下进行70次循环后保持在71.6%。电化学性能的改善可归因于抑制Mn2 *通过LBS玻璃层溶解到电解质中。

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