Melamine Foam-Derived Carbon Scaffold for Dendrite-Free and Stable Zinc Metal Anode

Molecules. 2023 Feb 11;28(4):1742. doi: 10.3390/molecules28041742.

Abstract

Aqueous Zn-ion batteries (AZIBs) are one of the most promising large-scale energy storage devices due to the excellent characteristics of zinc metal anode, including high theoretical capacity, high safety and low cost. Nevertheless, the large-scale applications of AZIBs are mainly limited by uncontrollable Zn deposition and notorious Zn dendritic growth, resulting in low plating/stripping coulombic efficiency and unsatisfactory cyclic stability. To address these issues, herein, a carbon foam (CF) was fabricated via melamine-foam carbonization as a scaffold for a dendrite-free and stable Zn anode. Results showed that the abundant zincophilicity functional groups and conductive three-dimensional network of this carbon foam could effectively regulate Zn deposition and alleviate the Zn anode's volume expansion during cycling. Consequently, the symmetric cell with CF@Zn electrode exhibited lower voltage hysteresis (32.4 mV) and longer cycling performance (750 h) than the pure Zn symmetric cell at 1 mA cm-2 and 1 mAh cm-2. Furthermore, the full battery coupling CF@Zn anode with MnO2 cathode can exhibit a higher initial capacity and better cyclic performance than the one with the bare Zn anode. This work brings a new idea for the design of three-dimensional (3D) current collectors for stable zinc metal anode toward high-performance AZIBs.

Keywords: Zn dendrite; Zn metal anode; carbon foam; electrochemical performance; melamine foam.

MeSH terms

  • Carbon
  • Electrodes
  • Manganese Compounds*
  • Metals
  • Oxides
  • Zinc*

Substances

  • Zinc
  • melamine
  • Manganese Compounds
  • Oxides
  • Metals
  • Carbon

Grants and funding

This work was financially supported by the National Key Research and Development Program of China (2020YFB1713500) and the Student Research Training Plan of Henan University of Science and Technology (2022040, 2022044).