Seed‐Assisted Reversible Dissolution/Deposition of MnO2 for Long‐Cyclic and Green Aqueous Zinc‐Ion Batteries

Author:

Qi Yifeng1,Li Fengfeng1ORCID,Sheng Hongwei1ORCID,Zhang Haoshuo1,Yuan Jiao12,Ma Lingxiao1,Bi Huasheng1,Ma Yuqi1,Li Wenquan2,Lan Wei1ORCID

Affiliation:

1. School of Physical Science and Technology Lanzhou University Lanzhou Gansu 730000 China

2. School of Physics and Electronic Information Engineering Qinghai Normal University Xining Qinghai 810008 China

Abstract

AbstractManganese oxide (MnO2) based aqueous zinc‐ion batteries (AZIBs) are considered to be a promising battery for grid‐scale energy storage. However, they usually suffer from the great challenge of capacity attenuation due to Mn dissolution and irreversible structural transformation. Herein, full use of the shortcomings is made to design high‐performance cathode‐free AZIBs. Manganese‐based Prussian blue analog (Mn‐PBA) is selected as a seed layer to provide a stable MnO2 electrodeposition surface. Thanks to the large specific surface area and manganophilic nature of Mn‐PBA, the deposition/dissolution kinetics between Mn2+ and MnO2 are significantly enhanced. Systematic studies revealed the mechanism of MnO2 deposition‐dissolution related to the reversible transformation of manganese oxide hydroxide and zinc hydroxide sulfate hydrate. Based on this, the developed cathode‐free AZIBs exhibit outstanding rate performance (with a specific capacity of 273.7 mAh g−1 at 1 A g−1) and extraordinary cycle stability (maintaining a specific capacity of 52.3 mAh g−1 after 50 000 cycles at 20 A g−1). Furthermore, the AZIBs with non‐toxic, biocompatible materials can be directly discarded after use, without causing pollution to the environment, which is expected to help achieve the sustainable development goals.

Funder

Fundamental Research Funds for the Central Universities

National Natural Science Foundation of China

Publisher

Wiley

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