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Thermodynamics, kinetics and crystal structure of gamma/beta-MnO2 in Li/MnO2 primary batteries

机译:LI / MNO2初级电池中γ/β-MNO2的热力学,动力学和晶体结构

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gamma/beta-MnO2 as a cathode material is a key factor for the performance of Li/MnO2 primary batteries. To clarify the thermodynamic and kinetic characteristics of gamma/beta-MnO2, its approximate entropy (Delta S) at various depths of discharge (DOD) in a quasi-equilibrium state is studied. The AS analysis reveals that the reduction process of gamma/beta-MnO2 with Li+ intercalation is divided into three stages (single-phase, two-phase and single-phase reaction) but these three stages are hard to distinguish by X-ray diffraction (XRD). This result is different from an earlier conclusion of only a single-phase reaction. The two-phase reaction of gamma/beta-MnO2 has a low charge transfer impedance (R-ct) and solid phase diffusion impedance (Z w ). This is advantageous for providing a high electrochemical reduction reaction rate of MnO2 and a high power output of the battery. The functional relationship between x in LixMnO2 and its corresponding open circuit voltage (OCV, the stable potential of MnO2 vs Li/Li+) is a mathematical formula similar to the Nernst equation. According to the formula parameters (m and n), the state of charge (SOC) of gamma/beta-MnO2 can be determined. Furthermore, the thermodynamics of gamma/beta-MnO2 during discharge demonstrates that the rate controlling steps (RCSs) are ion solid diffusion and electron transport, rather than the sole solid phase diffusion as previously reported. (C) 2020 Elsevier Ltd. All rights reserved.
机译:γ/ Beta-MnO2作为阴极材料是Li / MnO2初级电池性能的关键因素。为了阐明γ/ beta-mnO2的热力学和动力学特性,研究了在准平衡状态下各种排出深度的熵(Delta S)。作为分析表明,用Li +插层的γ/β-MnO 2的还原过程分为三个阶段(单相,两相和单相反应),但这三个阶段很难通过X射线衍射来区分( XRD)。该结果与早期结论不同的单相反应不同。 γ/β-MnO 2的两相反应具有低电荷转移阻抗(R-CT)和固相扩散阻抗(ZW)。这是有利于提供MnO2的高电化学还原反应速率和电池的高功率输出。 LIXMNO2中X的功能关系及其相应的开路电压(OCV,MNO2 VS LI / LI +的稳定电位)是类似于NERNST方程的数学公式。根据式参数(M和N),可以确定γ/β-MnO2的电荷状态(SoC)。此外,放电期间γ/β-MnO2的热力学证明了速率控制步骤(RCS)是离子固体扩散和电子传输,而不是如前所述的唯一固相扩散。 (c)2020 elestvier有限公司保留所有权利。

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