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用于可穿戴电子设备的柔性锌基电池的合理设计。

Rational Design of Flexible Zn-Based Batteries for Wearable Electronic Devices.

机构信息

Tsinghua-Berkeley Shenzhen Institute & Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen 518055, People's Republic of China.

出版信息

ACS Nano. 2023 Feb 14;17(3):1764-1802. doi: 10.1021/acsnano.2c09509. Epub 2023 Jan 30.

Abstract

The advent of 5G and the Internet of Things has spawned a demand for wearable electronic devices. However, the lack of a suitable flexible energy storage system has become the "Achilles' Heel" of wearable electronic devices. Additional problems during the transformation of the battery structure from conventional to flexible also present a severe challenge to the battery design. Flexible Zn-based batteries, including Zn-ion batteries and Zn-air batteries, have long been considered promising candidates due to their high safety, eco-efficiency, substantial reserve, and low cost. In the past decade, researchers have come up with elaborate designs for each portion of flexible Zn-based batteries to improve the ionic conductivities, mechanical properties, environment adaptabilities, and scalable productions. It would be helpful to summarize the reported strategies and compare their pros and cons to facilitate further research toward the commercialization of flexible Zn-based batteries. In this review, the current progress in developing flexible Zn-based batteries is comprehensively reviewed, including their electrolytes, cathodes, and anodes, and discussed in terms of their synthesis, characterization, and performance validation. By clarifying the challenges in flexible Zn-based battery design, we summarize the methodology from previous investigations and propose challenges for future development. In the end, a research paradigm of Zn-based batteries is summarized to fit the burgeoning requirement of wearable electronic devices in an iterative process, which will benefit the future development of Zn-based batteries.

摘要

5G 和物联网的出现催生了对可穿戴电子设备的需求。然而,缺乏合适的柔性储能系统已成为可穿戴电子设备的“阿喀琉斯之踵”。电池结构从传统向柔性的转变过程中存在的额外问题也对电池设计构成了严峻挑战。由于具有高安全性、生态效益、丰富的储备和低成本,柔性锌基电池,包括锌离子电池和锌空气电池,长期以来一直被认为是很有前途的候选者。在过去的十年中,研究人员为柔性锌基电池的各个部分提出了精心的设计,以提高离子电导率、机械性能、环境适应性和可扩展性。总结所报道的策略并比较它们的优缺点,将有助于推动柔性锌基电池的商业化研究。在这篇综述中,全面回顾了开发柔性锌基电池的最新进展,包括它们的电解质、阴极和阳极,并从它们的合成、表征和性能验证方面进行了讨论。通过阐明柔性锌基电池设计中的挑战,我们总结了以往研究中的方法,并提出了未来发展的挑战。最后,总结了一个锌基电池的研究范例,以适应可穿戴电子设备不断增长的需求,这将有利于锌基电池的未来发展。

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