JOURNAL ARTICLE

Suppression of zinc anode corrosion for printed flexible zinc‐air battery

Abstract

Abstract Self‐discharge caused by hydrogen evolution reaction (HER) coinciding with corrosion of the zinc anode is a major drawback of printed zinc‐air batteries. Thus, this work aims at suppressing self‐discharge of flexible printed zinc‐air batteries by coating thin layer of aluminum oxide ( ) onto the surface of zinc particles. The coating layer was directly synthesized onto the zinc particles by a low‐cost and facile sol–gel method. The coating effectively mitigated HER of the zinc particles, and delayed the corrosion of the zinc anode. Further, the effects of the thickness of layer on corrosion behavior of the zinc anode in 9 M potassium hydroxide as well as performance of the batteries were investigated. With a proper thickness of coating, corrosion of the battery was considerably suppressed without sacrificing the battery performance. (a) Photographic image of the fabricated battery, (b) transmission electron microscopic image of zinc particle coated with .

Keywords:
Zinc Anode Materials science Corrosion Coating Galvanic anode Battery (electricity) Layer (electronics) Potassium hydroxide Zinc hydroxide Metallurgy Composite material Chemical engineering Electrode Cathodic protection Chemistry

Metrics

62
Cited By
2.55
FWCI (Field Weighted Citation Impact)
33
Refs
0.92
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced battery technologies research
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced Battery Materials and Technologies
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Supercapacitor Materials and Fabrication
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials

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