首页> 外文期刊>ACS combinatorial science >Combinatorial Study of the Li-Ni-Mn-Co Oxide Pseudoquaternary System for Use in Li-Ion Battery Materials Research
【24h】

Combinatorial Study of the Li-Ni-Mn-Co Oxide Pseudoquaternary System for Use in Li-Ion Battery Materials Research

机译:用于锂离子电池材料研究的Li-Ni-Mn-Co氧化物假四元体系的组合研究

获取原文
获取原文并翻译 | 示例
       

摘要

Combinatorial synthesis has proven extremely effective in screening for new battery materials for Li-ion battery electrodes. Here, a study in the Li-Ni-Mn-Co-O system is presented, wherein samples with nearly 800 distinct compositions were prepared using a combinatorial and high-throughput method to screen for single-phase materials of high interest as next generation positive electrode materials. X-ray diffraction is used to determine the crystal structure of each sample. The Gibbs' pyramid representing the pseudoquaternary system was studied by making samples within three distinct pseudoternary planes defined at fractional cobalt metal contents of 10%, 20%, and 30% within the Li-Ni-Mn-Co-O system. Two large single-phase regions were observed in the system: the layered region (ordered rocksalt) and cubic spinel region; both of which are of interest for next-generation positive electrodes in lithium-ion batteries. These regions were each found to stretch over a wide range of compositions within the Li-Ni-Mn-Co-O pseudoquaternary system and had complex coexistence regions existing between them. The sample cooling rate was found to have a significant effect on the position of the phase boundaries of the single-phase regions. The results of this work are intended to guide further research by narrowing the composition ranges worthy of study and to illustrate the broad range of applications where solution-based combinatorial synthesis can have significant impact.
机译:事实证明,组合合成在筛选用于锂离子电池电极的新型电池材料方面极为有效。在此,我们对Li-Ni-Mn-Co-O系统进行了一项研究,其中使用组合和高通量方法制备了具有近800种不同组成的样品,以筛选出具有高关注度的单相材料作为下一代正极材料。电极材料。 X射线衍射用于确定每个样品的晶体结构。通过在Li-Ni-Mn-Co-O系统中钴金属含量分别为10%,20%和30%的三个不同的伪三元平面内制作样品,研究了代表伪四元系统的吉布斯金字塔。在系统中观察到两个大的单相区域:分层区域(有序岩盐)和立方尖晶石区域;锂离子电池的下一代正电极都对这两者很感兴趣。发现这些区域均在Li-Ni-Mn-Co-O伪四元体系中的范围广泛,且在它们之间存在复杂的共存区域。发现样品冷却速率对单相区域的相边界的位置具有显着影响。这项工作的结果旨在通过缩小值得研究的组成范围来指导进一步的研究,并说明基于溶液的组合合成可能会产生重大影响的广泛应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号