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Design and preparation of thin film gel polymer electrolyte for 3D Li-ion battery

机译:三维锂离子电池薄膜凝胶聚合物电解质的设计与制备

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Three-dimensional (3D) configuration of the battery provides a large active surface area of the electrodes to store and utilize more active material, enabling remarkable increase of capacity. Herein, we report on the development of a full 3D battery composed of Ni3Sn4 (Ni?Sn) alloy electrodeposited onto a nickel foam current collector to form a 3D anode, which was coated with a polymer electrolyte-separator film, and LiFePO4/CNT cathode filled into the voids of the resulting 3D structure. An ultrathin polymer coating on the 3D anode was obtained via layerby-layer technique. The X-ray diffraction investigations confirmed stability of the structure of the anode prior and after the polymer coating, while top and cross-section SEM images proved the uniformity of both the deposited 3D anode and the polymer coating on its surface. It was shown that a thin homogeneous layer of polymer can be obtained on 3D structured anode. This film effectively performed as a gel-like electrolyte in a full 3D battery. Cyclic voltammetry and charge-discharge tests exhibited stable electrochemical response and cyclability of the 3D battery. The prepared full 3D battery successfully operated at 0.1C rate and retained 90% of its initial capacity over 100 galvanostatic charge-discharge cycles.
机译:电池的三维(3D)配置提供了电极的大型有源表面区域,用于存储和利用更活跃的材料,从而实现容量显着增加。在此,我们报告了由Ni3SN4(NiβSn)合金的全3D电池的开发电涂覆在镍泡沫集电体上,以形成3D阳极,其涂覆有聚合物电解质分离膜,以及LiFepo4 / CNT阴极填充到所产生的3D结构的空隙中。通过层由层技术获得3D阳极上的超薄聚合物涂层。 X射线衍射研究证实了聚合物涂层之前和之后阳极结构的稳定性,而顶部和截面SEM图像证明了沉积的3D阳极和聚合物涂层的均匀性。结果表明,可以在3D结构阳极上获得薄的聚合物层。该薄膜在完整的3D电池中有效地作为凝胶状电解质进行。循环伏安法和充放电试验表现出稳定的电化学响应和3D电池的可阻碍性。制备的全3D电池以0.1C的速率成功运行,并保留了超过100个电镀电荷 - 放电循环的初始容量的90%。

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