A Study on Surface Modification Characteristics and Charge–Discharge Mechanism of Natural Serpentinite Ore Secondary Battery

Author:

Zhao Jun-Ren1,Chen Kuan-Jen2ORCID,Hung Fei-Yi1ORCID,Tsai Yung-Yi1,Wu Po-Ting1

Affiliation:

1. Department of Materials Science and Engineering, National Cheng Kung University, Tainan 70101, Taiwan

2. Department of Mechanical Engineering, Southern Taiwan University of Science and Technology, Tainan 710, Taiwan

Abstract

This study conducts low-vacuum sulfidation to form a sulfidation layer on the serpentinite-derived magnesium iron silicate, thereby enhancing its electrochemical properties. Results show (Mg,Fe)2SiO4 calcined at 900 °C has the best crystallinity, and the cubic FeS2 is synthesized on the surface of the orthorhombic magnesium iron silicate (MFS). Two distinct charge plateaus can be distinguished during the first charge process, and the discharge capacities increased significantly. This study confirms that the surface FeS2 layer provides extra ion pathways, allowing more lithium/magnesium ions to be extracted and inserted in the serpentinite-derived magnesium iron silicate. Accordingly, the serpentinite electrode boasts straightforward exploitation with low-cost advantages and potential.

Funder

Instrument Center of National Cheng Kung University and Minis-try of Science and Technology of Taiwan

Publisher

MDPI AG

Subject

Inorganic Chemistry

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