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用于具有极端环境适应性的全向可拉伸锌空气电池的超分子凝胶衍生高效双功能催化剂。

Supramolecular Gel-Derived Highly Efficient Bifunctional Catalysts for Omnidirectionally Stretchable Zn-Air Batteries with Extreme Environmental Adaptability.

作者信息

Liu Junpeng, Wang Mengke, Gu Chaonan, Li Jingjing, Liang Yujia, Wang Hai, Cui Yihan, Liu Chun-Sen

机构信息

Henan Provincial Key Laboratory of Surface & Interface Science, Zhengzhou University of Light Industry, Zhengzhou, 450002, China.

School of Chemistry and Chemical Engineering, Henan University of Technology, Zhengzhou, 450001, China.

出版信息

Adv Sci (Weinh). 2022 Jul;9(20):e2200753. doi: 10.1002/advs.202200753. Epub 2022 May 6.

Abstract

Most existing stretchable batteries can generally only be stretched uniaxially and suffer from poor mechanical and electrochemical robustness to withstand extreme mechanical and environmental challenges. A highly efficient bifunctional electrocatalyst is herein developed via the unique self-templated conversion of a guanosine-based supramolecular hydrogel and presents a fully integrated design strategy to successfully fabricate an omnidirectionally stretchable and extremely environment-adaptable Zn-air battery (ZAB) through the synergistic engineering of active materials and device architecture. The electrocatalyst demonstrates a very low reversible overpotential of only 0.68 V for oxygen reduction/evolution reactions (ORR/OER). This ZAB exhibits superior omnidirectional stretchability with a full-cell areal strain of >1000% and excellent durability, withstanding more than 10 000 stretching cycles. Promisingly, without any additional pre-treatment, the ZAB exhibits outstanding ultra-low temperature tolerance (down to -60 °C) and superior waterproofness, withstanding continuous water rinsing (>5 h) and immersion (>3 h). The present work offers a promising strategy for the design of omnidirectionally stretchable and high-performance energy storage devices for future on-skin wearable applications.

摘要

大多数现有的可拉伸电池通常只能单轴拉伸,并且在承受极端机械和环境挑战时,其机械和电化学稳定性较差。本文通过鸟苷基超分子水凝胶独特的自模板转化,开发了一种高效双功能电催化剂,并提出了一种完全集成的设计策略,通过活性材料和器件结构的协同工程,成功制备了一种全向可拉伸且极其适应环境的锌空气电池(ZAB)。该电催化剂在氧还原/析氧反应(ORR/OER)中表现出仅0.68 V的极低可逆过电位。这种ZAB具有卓越的全向拉伸性,全电池面积应变>1000%,且耐久性优异,可承受超过10000次拉伸循环。令人期待的是,无需任何额外预处理,该ZAB就表现出出色的超低温耐受性(低至-60°C)和卓越的防水性,可承受连续水冲洗(>5小时)和浸泡(>3小时)。本工作为未来用于皮肤可穿戴应用的全向可拉伸高性能储能器件的设计提供了一种有前景的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ccb/9284165/130a1a99e73d/ADVS-9-2200753-g006.jpg

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