阴极
材料科学
钨
溶解
氧化物
石墨
化学工程
表面改性
冶金
化学
物理化学
工程类
作者
Marcel Heidbüchel,Aurora Gómez-Martín,Lars Frankenstein,Ardavan Makvandi,Martin Peterlechner,Gerhard Wilde,Martin Winter,Johannes Kasnatscheew
标识
DOI:10.1002/smsc.202400135
摘要
Minor amounts of tungsten (W) are well known to improve Ni‐rich layered oxide‐based cathode active materials (CAMs) for Li ion batteries. Herein, W impacts are validated and compared for varied concentrations and incorporation routes in aqueous media for LiNi 0.90 Co 0.06 Mn 0.04 O 2 (NCM90‐6‐4), either via modification of a precursor Ni x Co y Mn z (OH) 2 (pCAM) within a sol–gel reaction or directly during synthesis, i.e., either via an W‐based educt or during co‐precipitation in a continuously operated Couette–Taylor reactor. In particular, the sol–gel modification is shown to be beneficial and reveals >500 cycles for ≈80% state‐of‐health NCM90‐6‐4||graphite cells. It can be related to homogeneously W‐modified surface as well as smaller and elongated primary particles, whereas the latter are suggested to better compensate anisotropic lattice stress and decrease amount of microcracks, consequently minimizing further rise in surface area and the accompanied failure cascades (e.g., phase changes, metal dissolution, and crosstalk). Moreover, the different incorporation routes are shown to reveal different outcomes and demonstrate the complexity and sensitivity of W incorporation.
科研通智能强力驱动
Strongly Powered by AbleSci AI