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A preliminary study on a new LiBOB/acetamide solid phase transition electrolyte

机译:新型LiBOB /乙酰胺固相过渡电解质的初步研究

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摘要

New solid electrolytes containing acetamide and lithium bioxalato borate (LiBOB) with different molar ratios have been investigated. Their melting points (T-m) are around 42 degrees C. The ionic conductivities and activation energies vary drastically below and above T-m. indicating a typical feature of phase transition electrolyte. The ionic conductivity of the LiBOB/acetamide electrolyte with a molar ratio of 1:8 is 5 x 10(-8) S cm(-1) at 25 degrees C but increases to 4 x 10(-3) S cm(-1) at 60 degrees C. It was found that anode materials, such as graphite and Li4Ti5O12, could not discharge and charge properly in this electrolyte at 60 degrees C due to the difficulty in forming a stable passivating layer on the anodes. However, a Li/LiFePO4 Cell with this electrolyte can be charged properly after heating to 60 degrees C, but cannot be charged at room temperature. Although the LiBOB/acetamide electrolytes are not suitable for Li-ion batteries due to poor electrode compatibility, the current results indicate that a solid electrolyte with a slightly higher phase transition temperature than room temperature may find potential application in stationary battery for energy storage where the electrolyte is at high conductive liquid state at elevated temperature and low conductive Solid state at low temperature. The interaction between acetamide and LiBOB in the electrolyte is also studied by Raman and FTIR spectroscopy.
机译:研究了含有不同摩尔比的乙酰胺和生物草酸硼酸锂(LiBOB)的新型固体电解质。它们的熔点(T-m)约为42摄氏度。离子电导率和活化能在T-m之下和之上都急剧变化。表明相变电解质的典型特征。 LiBOB /乙酰胺电解质的摩尔比为1:8的离子电导率在25摄氏度下为5 x 10(-8)S cm(-1),但增加到4 x 10(-3)S cm(-1) )在60℃下发现。由于难以在阳极上形成稳定的钝化层,在这种电解质中在60℃下阳极材料例如石墨和Li 4 Ti 5 O 12无法适当地放电和充电。但是,带有这种电解质的Li / LiFePO4电池在加热到60摄氏度后可以正确充电,但在室温下不能充电。尽管由于电极相容性差,LiBOB /乙酰胺电解质不适合锂离子电池,但目前的结果表明,相转变温度略高于室温的固体电解质可能在固定式电池中有潜在的应用,其中电解质在高温下处于高导电液态,在低温下处于低导电固态。电解质中乙酰胺和LiBOB之间的相互作用也通过拉曼光谱和FTIR光谱进行了研究。

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