首页> 外文期刊>Journal of Energy Storage >A flexible tysonite-type La_(0.95)Ba_(0.05)F_(2.95)@PEO-based composite electrolyte for the application of advanced fluoride ion battery
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A flexible tysonite-type La_(0.95)Ba_(0.05)F_(2.95)@PEO-based composite electrolyte for the application of advanced fluoride ion battery

机译:柔性钛矿型La_(0.95)Ba_(0.05)F_(2.95)@PEO基复合电解质在氟离子电池中的应用

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Fluoride ion batteries (FIBs) with high theoretical energy density have been proposed as a promising competitor of lithium ion batteries (LIBs), which are based on a 'fluoride shuttle' - the reversible transfer of fluoride anions from one electrode to the other. To improve further contact between electrode and electrolyte, decrease interfacial impedance and provide buffer layer "soft interface" for volume change of electrode during charging and discharging process, here we put forward to prepare a flexible solid-state composite electrolyte based on the tysonite-type La0.95Ba0.05F2.95 (LBF05) inorganic particles and poly (propylene carbonate). Tysonite-type LBF05 inorganic particles are synthesized by wet chemical method, and then the solid-state composite electrolyte is prepared by reverse molding method to mix LBF05 and PEO. Morphological, chemical and structural characterizations of the solid-state composite electrolytes are studied by X-ray diffraction (XRD), scanning electron microscopy (SEM), thermogravimetric analysis and differential scanning calorimetry (TGA-DSC), Fourier transfer-infrared spectrometry (FT-IR) and charge/discharge tests. It has been found that the ionic conductivity of solid-state composite electrolyte LBF05@PEO reaches a maximum of 5.75 x 10(-6) S.cm(-1) at 90 degrees C and the electrochemical stability window reaches 4.7 V versus Li/Li+ at 70 degrees C. Charge/discharge tests for the FIBs are conducted at 70 degrees C with LBF05@PEO as electrolyte, Li as anode, and FeF3 composite material as cathode. The prepared solid-state fluoride ion battery FeF3/LBF05@PEO/Li delivers initial discharge capacity of 113.5 mA h g(-1) at 0.1 C (1 C= 273 mA h g(-1)) between 1.0 V and 4.5 V. Although many works need still to be further developed, this study opens a new way to the development of solid-state composite electrolyte for advanced fluoride ion battery.
机译:已经提出具有高理论能量密度的氟化物离子电池(FIB)作为锂离子电池(LIB)的有前途的竞争者,其基于“氟化物穿梭”-氟化物阴离子从一个电极到另一个电极的可逆转移。为了改善电极与电解质之间的进一步接触,降低界面阻抗,为充放电过程中电极的体积变化提供缓冲层“软界面”,在此我们提出了一种基于钛矿型的柔性固态复合电解质的制备方法。 La0.95Ba0.05F2.95(LBF05)无机颗粒和聚碳酸亚丙酯。通过湿化学法合成了Tysonite型LBF05无机颗粒,然后通过反向成型法将LBF05和PEO混合,制备了固态复合电解质。通过X射线衍射(XRD),扫描电子显微镜(SEM),热重分析和差示扫描量热法(TGA-DSC),傅立叶转移红外光谱(FT)研究了固态复合电解质的形态,化学和结构特征-IR)和充电/放电测试。已经发现,固态复合电解质LBF05 @ PEO的离子电导率在90摄氏度时最大为5.75 x 10(-6)S.cm(-1),相对于Li /,电化学稳定性窗口达到4.7V。 Li +在70摄氏度下。FIB的充电/放电测试在70摄氏度下进行,其中LBF05 @ PEO作为电解质,Li作为阳极,FeF3复合材料作为阴极。制备的固态氟离子电池FeF3 / LBF05 @ PEO / Li在1.0 V(4.5 V)和0.1 C(1 C = 273 mA hg(-1))时的初始放电容量为113.5 mA hg(-1)。许多工作仍有待进一步发展,这项研究为高级氟离子电池固态复合电解质的开发开辟了一条新途径。

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