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◆ Chemistry of Materials2026-01-08· Thermal decomposition

Thermal Stability of LiNi <sub> <i>x</i> </sub> Mn <sub> <i>y</i> </sub> Co <sub> <i>z</i> </sub> O <sub>2</sub> Cathode Materials

Jian Peng, Timothy A. Ablott, Helen E.A. Brand, Daniel P. Abraham, Taren Cataldo, Neeraj Sharma

原始摘要(英文原文)· Original abstract
The thermal evolution of LiNi x Mn y Co z O 2 (NMC) lithium-ion battery electrode materials is examined at various states of charge (SOC) or lithium concentrations for a variety of Ni:Mn:Co ratios or electrode compositions. Synchrotron X-ray diffraction (XRD) combined with Rietveld analysis shows the onset decomposition temperatures of phases, decomposition products, lattice parameters, and phase fractions as a function of composition and SOC. SOC impacts the lattice parameters of the NMC phase, where a collapse of the c -axis in the NMC phases is noted due to lithium extraction. Among the compositions examined, the low-Ni NMC111 uncycled sample (NMC111 0% SOC) exhibited the highest thermal stability, with a decomposition temperature approximately 250 °C higher than that of NMC532 0% and NMC811 0%. When the SOC exceeds 50% (i.e., more than 0.4 mol of Li ions extracted), the influence of Ni content on the decomposition temperature becomes negligible, with decomposition occurring around 250–300 °C for all compositions. Ni content also affects the decomposition pathways: NMC111 tends to first form a TM 3 O 4 -type phase, where TM represents transition metals, before transforming into a TM O-type phase, whereas most of the NMC811 samples directly decompose into the TM O phase. The presence of metallic phases was confirmed by both XRD and thermogravimetric-differential scanning calorimetry (TGA-DSC) analysis, as a result of heating under inert conditions. The TGA-DSC results suggest that metallic phase formation is favored at lower SOC in samples with a higher Ni content. This work provides comprehensive insight into the thermal degradation pathways of NMC materials as a function of composition, SOC, and temperature.
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Thermal Stability of LiNi <sub> <i>x</i> </sub> Mn <sub> <i>y</i> </sub> Co <sub> <i>z</i> </sub> O <sub>2</sub> Cathode Materials — 科研速览 Science Skim