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Published on: June 9, 2023
Regulating Interfacial Kinetics of Mg Metal Anode by Introducing Thiourea Additives to Halogen-Free Electrolyte
Engy El-Dek1, Ahmed H Tantawy1, Shuyong Cheng2
1Chemistry Department, Faculty of Science, Benha University,13518Benha, Egypt.
Abstract:
Regulating interfacial kinetics at the Mg metal anode is crucial to advancing the performance of magnesium-sulfur (Mg-S) batteries. In this study, we present a novel strategy by introducing thiourea (TU) additives to a halogen-free electrolyte (HFE), aiming to stabilize the Mg-electrolyte interface and enhance Mg2+ transport. The optimized TU content (0.05-0.2 g) added to 1.5 g of Mg(NO3)2·6H2O improves ion mobility, increases the transference number to 0.81, and enhances ionic conductivity. Coin cells assembled with TU-modified electrolytes exhibit an initial discharge capacity of 880 mAh g-1 and more stable electrochemical behavior over the early cycles, along with reduced polysulfide diffusion compared to that of the pristine system. Comprehensive characterizations (X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), and energy-dispersive X-ray spectroscopy (EDS)) confirm that the TU additive facilitates the formation of a more uniform and stable interfacial layer on the Mg anode surface. These findings demonstrate that interfacial kinetics can be effectively regulated through simple electrolyte engineering, offering a promising route to enhance the electrochemical performance of Mg-S batteries.
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