4.8 Article

A Biodegradable Secondary Battery and its Biodegradation Mechanism for Eco-Friendly Energy-Storage Systems

期刊

ADVANCED MATERIALS
卷 33, 期 10, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202004902

关键词

biodegradable batteries; eco‐ friendly materials; non‐ toxic materials; sodium‐ ion rechargeable batteries

资金

  1. National Research Foundation of Korea (NRF) [IBS-R006-A1, IBS-R006-A2]
  2. Creative Materials Discovery Program [NRF-2019M3E6A1064522, 2018R1A2A1A05079249]
  3. [NRF-2017M3D1A1039553]
  4. National Research Foundation of Korea [4199990314450] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

The production of rechargeable batteries is rapidly expanding, introducing new challenges in minimizing the environmental impact of disposing used batteries. A novel eco-friendly and biodegradable sodium-ion secondary battery has been developed, with each component decomposing into non-toxic compounds or elements in nature, offering a potential eco-friendly paradigm for large-scale rechargeable battery systems.
The production of rechargeable batteries is rapidly expanding, and there are going to be new challenges in the near future about how the potential environmental impact caused by the disposal of the large volume of the used batteries can be minimized. Herein, a novel strategy is proposed to address these concerns by applying biodegradable device technology. An eco-friendly and biodegradable sodium-ion secondary battery (SIB) is developed through extensive material screening followed by the synthesis of biodegradable electrodes and their seamless assembly with an unconventional biodegradable separator, electrolyte, and package. Each battery component decomposes in nature into non-toxic compounds or elements via hydrolysis and/or fungal degradation, with all of the biodegradation products naturally abundant and eco-friendly. Detailed biodegradation mechanisms and toxicity influence of each component on living organisms are determined. In addition, this new SIB delivers performance comparable to that of conventional non-degradable SIBs. The strategy and findings suggest a novel eco-friendly biodegradable paradigm for large-scale rechargeable battery systems.

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