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微流控辅助3D打印具有二维导电金属有机框架/碳化钛纳米片异质结构的锌粉阳极用于高稳定性锌有机电池

Microfluidic-Assisted 3D Printing Zinc Powder Anode with 2D Conductive MOF/MXene Heterostructures for High-Stable Zinc-Organic Battery.

作者信息

Lu Hongyu, Hu Jisong, Zhang Kaiqi, Zhao Jingxin, Deng Shenzhen, Li Yujie, Xu Bingang, Pang Huan

机构信息

State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin, 150001, P. R. China.

School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan, 430074, P. R. China.

出版信息

Adv Mater. 2024 Feb;36(6):e2309753. doi: 10.1002/adma.202309753. Epub 2023 Dec 6.

Abstract

Zinc powder (Zn-P) anodes have significant advantages in terms of universality and machinability compared with Zn foil anodes. However, their rough surface, which has a high surface area, intensifies the uncontrollable growth of Zn dendrites and parasitic side reactions. In this study, an anti-corrosive Zn-P-based anode with a functional layer formed from a MXene and Cu-THBQ (MXene/Cu-THBQ) heterostructure is successfully fabricated via microfluidic-assisted 3D printing. The unusual anti-corrosive and strong adsorption of Zn ions using the MXene/Cu-THBQ functional layer can effectively homogenize the Zn ion flux and inhibit the hydrogen evolution reaction (HER) during the repeated process of Zn plating/stripping, thus achieving stable Zn cycling. Consequently, a symmetric cell based on Zn-P with the MXene/Cu-THBQ anode exhibits a highly reversible cycling of 1800 h at 2 mA cm /1 mAh cm . Furthermore, a Zn-organic full battery matched with a 4-hydroxy-2,2,6,6-tetramethylpiperidine-1-oxyl organic cathode riveted on graphene delivers a high reversible capacity and maintains a long cycle life.

摘要

与锌箔阳极相比,锌粉(Zn-P)阳极在通用性和可加工性方面具有显著优势。然而,其具有高表面积的粗糙表面加剧了锌枝晶的不可控生长和寄生副反应。在本研究中,通过微流控辅助3D打印成功制备了一种具有由MXene和Cu-THBQ(MXene/Cu-THBQ)异质结构形成的功能层的抗腐蚀Zn-P基阳极。MXene/Cu-THBQ功能层不同寻常的抗腐蚀性和对锌离子的强吸附性能够有效地使锌离子通量均匀化,并在锌电镀/剥离的重复过程中抑制析氢反应(HER),从而实现稳定的锌循环。因此,基于带有MXene/Cu-THBQ阳极的Zn-P的对称电池在2 mA cm²/1 mAh cm²下表现出1800小时的高度可逆循环。此外,与铆接在石墨烯上的4-羟基-2,2,6,6-四甲基哌啶-1-氧基有机阴极相匹配的锌有机全电池具有高可逆容量并保持长循环寿命。

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