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Bipolar Electrodes for Next‐Generation Rechargeable Batteries

机译:用于下一代可充电电池的双极电极

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摘要

The development of advanced rechargeable batteries provides a great opportunity for basic and applied researchers to collectively overcome challenging scientific and technological barriers that directly address a critical need for energy storage. In addition to novel battery chemistries often scientifically reviewed, advanced battery structures via technological innovations that boost battery performance are also worthy of attention. In this context, bipolar electrodes (BEs) are capable of improving the specific power, simplifying cell components, and reducing manufacturing costs for rechargeable batteries. By focusing on the fundamentals and applications of BEs in rechargeable batteries, the rational utilization of BEs from an academic perspective is considered. The progress and challenges of BEs are discussed and summarized in detail. Key techniques and materials for enabling BEs are highlighted and an outlook for the future directions of BEs that involve emerging concepts, such as wearable devices, all‐solid‐state batteries, fast spraying fabrication, and recyclable secondary batteries, is also presented.
机译:先进的可充电电池的开发为基本和应用研究人员提供了一个很好的机会,共同克服了挑战的科学和技术障碍,直接解决了能源储存的关键需求。除了新颖的电池化学性化学产品外,通常通过科学审查,通过技术创新的先进电池结构,促进电池性能也值得关注。在这种情况下,双极电极(BES)能够改善特定功率,简化细胞分量,并降低可充电电池的制造成本。通过专注于可充电电池中BES的基础和应用,考虑了学术角度的合理利用。详细讨论和概述了BES的进展和挑战。还突出显示了用于启用BES的关键技术和材料,并涉及涉及新兴概念的未来方向的前景,例如可穿戴设备,全固态电池,快速喷涂制造和可回收的二次电池。

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