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Improving cycling performance of LiCoPO 4 cathode material by adding tris(trimethylsilyl) borate as electrolyte additive

机译:通过将Tris(三甲基甲硅烷基)加入硼酸盐作为电解质添加剂,改善Licopo的循环性能 4 阴极材料

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摘要

AbstractTris(trimethylsilyl) borate (TMSB) is used as electrolyte additive to overcome the severe capacity fading of LiCoPO4cathode at high voltage. The presence of TMSB effectively improves the cyclic stability of LiCoPO4cathode in Ethylene carbonate (EC)-based electrolyte between 3V and 5V, when the electrolyte contains with 1wt% TMSB shows the best cycle performance. For instance, LiCoPO4cathode delivers an initial discharge capacity of 144mAhg?1at 0.1C and with a capacity retention of 76% after 50cycles, while it's only 132mAhg?1and 45% for that in normal electrolyte without TMSB. The linear sweep voltammetry (LSV) and cyclic voltammetry (CV) results indicate that TMSB oxidizes preferentially to normal electrolyte and forms a stable SEI film on LiCoPO4surface at the first cycle which effectively reduces the electrode polarization. The electrochemical impedance spectroscopy (EIS) results reveal that the stable SEI film alleviates the growth of SEI layer on the LiCoPO4surface and relieves the resistance increase to facilitate Li-ion transfer the interface between electrode and electrolyte. Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) reveal that a 20nm film can be observed on the cathode surface after 50cycles as the electrolyte containing with 1wt% TMSB. Moreover, X-ray photoelectron spectrometer (XPS) patterns confirm that the oxidation products of TMSB participate in the SEI film formation. The enhancement of electrochemical performances is attributed to the thin and steady protective SEI film that originates from TMSB, which stabilizes the interface of the cathode and electrolyte, suppresses the continuous decomposition of normal electrolyte at 5V high voltage and relieves the resistance increase to facilitate Li-ion transfer at the interface during the cycling process.]]>
机译:<![cdata [ 抽象 Tris(Timethylsilyl)硼酸硼(TMSB)用作电解质添加剂,以克服LiCopo的严重容量衰落 4 高压下的阴极。 TMSB的存在有效提高了LiCoPo的环状稳定性 4 阴极在碳酸亚乙酯(EC)的基于3V和5V之间的电解质,当电解质含有1wt%时TMSB显示最佳循环性能。例如,LiCopo 4 阴极可提供144mAhg ?1 的初始放电容量为0.1℃在50cycles后的容量保留为76%,而它只有132mAhg 1/1 c:sup>和45%,在没有tmsb的正常电解质中。线性扫描伏安法(LSV)和循环伏安法(CV)结果表明,TMSB优先氧化成正常电解质,并在LiCopo中形成稳定的SEI膜 4 表面第一循环有效降低电极极化。电化学阻抗谱(EIS)结果表明,稳定的SEI薄膜减轻了Licopo上SEI层的生长 4 表面并减轻阻力增加,以方便LI-离子转移电极和电解质之间的界面。扫描电子显微镜(SEM)和透射电子显微镜(TEM)揭示了在50ncy的阴极表面上观察到20nm膜作为含有1wt%TMSB的电解质。此外,X射线光电子光谱仪(XPS)图案确认TMSB的氧化产物参与SEI膜形成。电化学性能的增强归因于诸如源自TMSB的薄且稳定的保护性SEI膜,其稳定阴极和电解质的界面,抑制了5V高压下正常电解质的连续分解,并降低了阻力增加,以便于促进Li-在循环过程中的界面处的离子转移。 ]]>

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