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Fabrication and Characterization of 3D-Printed Highly-Porous 3D LiFePO 4 Electrodes by Low Temperature Direct Writing Process

机译:低温直写法制备3D打印高孔3D LiFePO 4电极及其表征

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LiFePO 4 (LFP) is a promising cathode material for lithium-ion batteries. In this study, low temperature direct writing (LTDW)-based 3D printing was used to fabricate three-dimensional (3D) LFP electrodes for the first time. LFP inks were deposited into a low temperature chamber and solidified to maintain the shape and mechanical integrity of the printed features. The printed LFP electrodes were then freeze-dried to remove the solvents so that highly-porous architectures in the electrodes were obtained. LFP inks capable of freezing at low temperature was developed by adding 1,4 dioxane as a freezing agent. The rheological behavior of the prepared LFP inks was measured and appropriate compositions and ratios were selected. A LTDW machine was developed to print the electrodes. The printing parameters were optimized and the printing accuracy was characterized. Results showed that LTDW can effectively maintain the shape and mechanical integrity during the printing process. The microstructure, pore size and distribution of the printed LFP electrodes was characterized. In comparison with conventional room temperature direct ink writing process, improved pore volume and porosity can be obtained using the LTDW process. The electrochemical performance of LTDW-fabricated LFP electrodes and conventional roller-coated electrodes were conducted and compared. Results showed that the porous structure that existed in the printed electrodes can greatly improve the rate performance of LFP electrodes.
机译:LiFePO 4(LFP)是一种有前途的锂离子电池正极材料。在这项研究中,首次使用基于低温直写(LTDW)的3D打印来制造三维(3D)LFP电极。 LFP墨水沉积到低温室中并固化,以保持打印特征的形状和机械完整性。然后将印刷的LFP电极冷冻干燥以除去溶剂,以便在电极中获得高孔结构。通过添加1,4二恶烷作为冷冻剂,可以显影能够在低温下冷冻的LFP油墨。测量所制备的LFP油墨的流变行为,并选择合适的组成和比例。开发了LTDW机器来印刷电极。优化了印刷参数并表征了印刷精度。结果表明,LTDW可以在印刷过程中有效地保持形状和机械完整性。表征了印刷的LFP电极的微观结构,孔径和分布。与常规的室温直接墨水书写工艺相比,使用LTDW工艺可获得更好的孔体积和孔隙率。进行并比较了LTDW制备的LFP电极和常规辊涂电极的电化学性能。结果表明,存在于印刷电极中的多孔结构可以大大提高LFP电极的倍率性能。

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