Boron in Ni-Rich NCM811 Cathode Material: Impact on Atomic and Microscale Properties

微尺度化学 材料科学 碳化硼 阴极 兴奋剂 共沉淀 结构精修 微观结构 结块 离子 分析化学(期刊) 冶金 晶体结构 化学工程 无机化学 结晶学 物理化学 化学 复合材料 有机化学 色谱法 数学教育 工程类 数学 光电子学
作者
Christoph Roitzheim,Liang‐Yin Kuo,Yoo Jung Sohn,Martin Finsterbusch,S. Möller,Doris Sebold,Helen Valencia,Maria Meledina,Joachim Mayer,U. Breuer,Payam Kaghazchi,Olivier Guillon,Dina Fattakhova‐Rohlfing
出处
期刊:ACS applied energy materials [American Chemical Society]
卷期号:5 (1): 524-538 被引量:50
标识
DOI:10.1021/acsaem.1c03000
摘要

Doping of Ni-rich cathode active materials with boron is a promising way to improve their cycling stability and mitigate their degradation, but it is still not understood how this effect is achieved and where the boron is located. To receive deeper insights into the impact of doping on atomic and microscale properties, B-doped Li[Ni0.8Co0.1Mn0.1]O2 (NCM811) cathode materials were synthesized by a hydroxide coprecipitation as a model compound to verify the presence and location of boron in B-doped, Ni-rich NCM, as well as its impact on the microstructure and electrochemical properties, by a combined experimental and theoretical approach. Besides X-ray diffraction and Rietveld refinement, DFT calculation was used to find the preferred site of boron absorption and its effect on the NCM lattice parameters. It is found that boron shows a trigonal planar and tetrahedral coordination to oxygen in the Ni layers, leading to a slight increase in lattice parameter c through an electrostatic interaction with Li ions. Therefore, B-doping of NCM811 affects the crystal structure and cation disorder and leads to a change in primary particle size and shape. To experimentally prove that the observations are caused by boron incorporated into the NCM lattice, we detected, quantified, and localized boron in 2 mol % B-doped NCM811 by ion beam analysis and TOF-SIMS. It was possible to quantify boron by NRA with a depth resolution of 2 μm. We found a boron enrichment on the agglomerate surface but also, more importantly, a significant high and constant boron concentration in the interior of the primary particles near the surface, which experimentally verifies that boron is incorporated into the NCM811 lattice.
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