从文献计量分析:3D打印设计策略和电池应用,重点是锌离子电池

SmartMat Pub Date : 2023-03-15 DOI:10.1002/smm2.1197
Xuan Gao, Kejiang Liu, Chang Su, Wei Zhang, Yuhang Dai, I. Parkin, C. Carmalt, Guanjie He
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引用次数: 3

摘要

三维(3D)打印有可能彻底改变储能设备的设计和制造方式。在本文中,我们探索了3D打印在储能设备设计和生产中的应用,特别是锌离子电池(zib),并研究了其相对于传统制造方法的潜在优势。3D打印可以显著改善zib的定制化,使其成为未来能源存储的一个有前途的策略。特别是,3D打印允许创建复杂的,定制的几何形状和设计,可以优化电池的能量密度,功率密度和整体性能。同时,我们讨论并比较了基于薄膜、交叉数字化和框架的不同配置的3D打印设计策略对储能器件的影响,重点是zib。此外,3D打印使快速
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From bibliometric analysis: 3D printing design strategies and battery applications with a focus on zinc‐ion batteries
Three ‐ dimensional (3D) printing has the potential to revolutionize the way energy storage devices are designed and manufactured. In this paper, we explore the use of 3D printing in the design and production of energy storage devices, especially zinc ‐ ion batteries (ZIBs) and examine its potential advantages over traditional manufacturing methods. 3D printing could significantly improve the customization of ZIBs, making it a promising strategy for the future of energy storage. In particular, 3D printing allows for the creation of complex, customized geometries, and designs that can optimize the energy density, power density, and overall performance of batteries. Simultaneously, we discuss and compare the impact of 3D printing design strategies based on different configurations of film, interdigitation, and framework on energy storage devices with a focus on ZIBs. Additionally, 3D printing enables the rapid
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