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镁和铜掺入对稳定锂离子电池无钴镍酸锂正极的协同作用。

Complementary Effects of Mg and Cu Incorporation in Stabilizing the Cobalt-Free LiNiO Cathode for Lithium-Ion Batteries.

作者信息

Seong Won Mo, Manthiram Arumugam

机构信息

Materials Science and Engineering Program and Texas Materials Institute, The University of Texas at Austin, Austin, Texas 78712, United States.

出版信息

ACS Appl Mater Interfaces. 2020 Sep 30;12(39):43653-43664. doi: 10.1021/acsami.0c11413. Epub 2020 Sep 15.

Abstract

Since the discovery of LiNiO several decades ago, a new era of electric vehicles demanding high-energy-density lithium-ion batteries (LIBs) has recently rebooted the interest in this cathode material to eliminate the dependence on expensive and scarcely available cobalt. However, LiNiO has been plagued by cycle instability, thermal instability, and air instability. We present here an exploration of the mutual interaction of magnesium and copper in stabilizing the cobalt-free LiNiO cathode. Although Mg doping is beneficial for the robustness of the bulk structure of LiNiO, surface characterization results of Mg-doped LiNiO implies the need for further surface protection. To that end, we have incorporated Cu in addition to Mg in that Cu stabilizes the surface of Mg-doped LiNiO by forming a protective stable surface layer without harming the bulk. Notable variations of the surface residual lithium composition (Li/Li) along with the incorporation of stabilizers are also discussed. The harmony between Mg and Cu with as little as 0.5 atom % Mg and 0.3 atom % Cu significantly enhances the specific energy and cycle life of LiNiO. This study demonstrates how the co-incorporation of optimal dopants can help stabilize both the bulk and surface and provides new insights toward developing cobalt-free layered oxide cathodes for high-energy-density LIBs.

摘要

几十年前发现LiNiO以来,对高能量密度锂离子电池(LIBs)有需求的电动汽车新时代,最近重新激发了人们对这种阴极材料的兴趣,以消除对昂贵且稀缺的钴的依赖。然而,LiNiO一直受到循环不稳定性、热不稳定性和空气不稳定性的困扰。我们在此展示了镁和铜在稳定无钴LiNiO阴极中的相互作用探索。虽然镁掺杂有利于LiNiO体相结构的稳健性,但镁掺杂LiNiO的表面表征结果表明需要进一步的表面保护。为此,我们除了掺入镁之外还掺入了铜,因为铜通过形成保护性稳定表面层来稳定镁掺杂LiNiO的表面,而不会损害体相。还讨论了随着稳定剂的掺入表面残余锂组成(Li/Li)的显著变化。仅含0.5原子%的镁和0.3原子%的铜时,镁和铜之间的协同作用显著提高了LiNiO的比能量和循环寿命。这项研究展示了最佳掺杂剂的共掺入如何有助于稳定体相和表面,并为开发用于高能量密度LIBs的无钴层状氧化物阴极提供了新的见解。

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