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Flexible 3D Interlocking Lithium-Ion Batteries

机译:灵活的3D互锁锂离子电池

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Highly deformable and advanced flexible lithium-ion batteries (LIBs) are considered to be a promising power source for flexible electronics. However, despite tremendous efforts to achieve flexibility, battery performance still lags behind the commercial standards. Here, a flexible 3D interlocking LIB via a one-step patterning process of a preassembled cell under industrial electrode fabrication conditions, to satisfy commercial viability, is demonstrated. The 3D interlocking full-cell with a high electrode loading level demonstrates excellent cycle performance without any degradation during the 5000 times flexing process. The tightly connected cathode and anode increase the contact area and prevent the current issues of flexible batteries such as delamination, electrode cracking, and lithium plating. This study on flexible batteries therefore suggests the 3D interlocked architecture lends itself to the design of highly deformable energy storage devices.
机译:高度可变形且先进的柔性锂离子电池(LIB)被认为是柔性电子产品的有希望的电源。但是,尽管付出了巨大的努力来实现灵活性,但电池性能仍落后于商业标准。在此,展示了在工业电极制造条件下通过预组装电池的一步式图案化工艺来满足商业可行性的柔性3D互锁LIB。具有高电极负载水平的3D互锁全电池展示了出色的循环性能,在5000次弯曲过程中没有任何退化。紧密连接的阴极和阳极增加了接触面积,并防止了柔性电池的电流问题,例如分层,电极开裂和锂电镀。因此,对柔性电池的这项研究表明3D互锁的体系结构适合于高度变形的储能设备的设计。

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