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首页> 外文期刊>Advanced energy materials >3D Printable Ceramic-Polymer Electrolytes for Flexible High-Performance Li-Ion Batteries with Enhanced Thermal Stability
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3D Printable Ceramic-Polymer Electrolytes for Flexible High-Performance Li-Ion Batteries with Enhanced Thermal Stability

机译:用于柔性高性能锂离子电池的3D可打印陶瓷聚合物电解质,具有增强的热稳定性

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摘要

This study establishes an approach to 3D print Li-ion battery electrolytes with controlled porosity using a dry phase inversion method. This ink formulation utilizes poly(vinyldene fluoride) in a mixture of N-methyl-2-pyrrolidone (good solvent) and glycerol (weak nonsolvent) to generate porosity during a simple drying step. When a nanosized Al2O3 filler is included in the ink, uniform sub-micrometer pore formation is attained. In other words, no additional processing steps such as coagulation baths, stretching, or etching are required for full functionality of the electrolyte, which makes it a viable candidate to enable completely additively manufactured Li-ion batteries. Compared to commercial polyolefin separators, these electrolytes demonstrate comparable high rate electrochemical performance (e.g., 5 C), but possess better wetting characteristics and enhanced thermal stability. Additionally, this dry phase inversion method can be extended to printable composite electrodes, yielding enhanced flexibility and electrochemical performance over electrodes prepared with only good solvent. Finally, sequentially printing this electrolyte ink over a composite electrode via a direct write extrusion technique has been demonstrated while maintaining expected functionality in both layers. These ink formulations are an enabling step toward completely printed batteries and can allow direct integration of a flexible power source in restricted device areas or on nonplanar surfaces.
机译:这项研究建立了一种使用干相转化法控制孔隙度的3D打印锂离子电池电解质的方法。该油墨配方在N-甲基-2-吡咯烷酮(良溶剂)和甘油(弱非溶剂)的混合物中利用聚偏二氟乙烯在简单的干燥步骤中产生孔隙。当油墨中包含纳米尺寸的Al2O3填料时,可获得均匀的亚微米孔形成。换句话说,对于电解质的全部功能,不需要诸如凝结浴,拉伸或蚀刻之类的附加处理步骤,这使其成为可行的候选物,以使得能够完全添加制造的锂离子电池。与市售的聚烯烃隔板相比,这些电解质表现出可比的高速率电化学性能(例如5℃),但是具有更好的润湿特性和增强的热稳定性。此外,这种干相转化方法可以扩展到可印刷的复合电极,与仅使用优质溶剂制备的电极相比,具有更高的柔韧性和电化学性能。最后,已经证明了通过直接写挤压技术在复合电极上顺序印刷该电解质油墨,同时在两层中均保持了预期的功能。这些墨水配方是朝着完全印刷电池的方向迈进的一步,可以使柔性电源直接集成在受限的设备区域或非平面表面上。

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  • 来源
    《Advanced energy materials》 |2017年第14期|1602920.1-1602920.10|共10页
  • 作者单位

    Air Force Res Lab, Mat & Mfg Directorate, Soft Matter Branch, Wright Patterson AFB, OH 45433 USA|Wright State Univ, Dept Mech & Mat Engn, Dayton, OH 45435 USA;

    Air Force Res Lab, Mat & Mfg Directorate, Soft Matter Branch, Wright Patterson AFB, OH 45433 USA|UES Inc, Dayton, OH 45432 USA;

    Air Force Res Lab, Mat & Mfg Directorate, Soft Matter Branch, Wright Patterson AFB, OH 45433 USA|UES Inc, Dayton, OH 45432 USA;

    Air Force Res Lab, Mat & Mfg Directorate, Soft Matter Branch, Wright Patterson AFB, OH 45433 USA|Univ Minnesota, Dept Chem Engn & Mat Sci, Minneapolis, MN 55455 USA;

    Air Force Res Lab, Mat & Mfg Directorate, Soft Matter Branch, Wright Patterson AFB, OH 45433 USA;

    Air Force Res Lab, Mat & Mfg Directorate, Soft Matter Branch, Wright Patterson AFB, OH 45433 USA;

    Wright State Univ, Dept Mech & Mat Engn, Dayton, OH 45435 USA;

    Air Force Res Lab, Mat & Mfg Directorate, Soft Matter Branch, Wright Patterson AFB, OH 45433 USA;

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