
Mingli Wang
Articles
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Dec 3, 2024 |
pubs.rsc.org | Hao Luo |Fan Li |Mingli Wang |Shang Sun
Reconstructing the phase of vanadium oxides enables redox-catalysis manipulated reversible sulfur conversion for stable Zn–S batteries† The naturally sluggish redox kinetics and limited utilization associated with the sulfur conversion in Zn/S electrochemistry hinder its real application.
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Nov 18, 2024 |
pubs.rsc.org | Hao Luo |Fan Li |Mingli Wang |Shang Sun
Reconstructing phase of vanadium oxides enables redox-catalysis manipulated reversible sulfur conversion for stable Zn-S batteries The naturally sluggish redox kinetics and limited utilization associated with the sulfur conversion in Zn/S electrochemistry hinder its real application. Herein, we report an in-situ phase reconstruction strategy that activates the catalysis activity of vanadium oxides for invoking the redox-catalysis to manipulate reversible sulfur conversion.
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Oct 20, 2023 |
pubs.rsc.org | Weiwei Zhang |Mingli Wang |Hong Zhi Zhang |Lin Fu
Bidirectional Manipulation of Iodine Redox Kinetics in Aqueous Fe-I2 Electrochemistry Catalyzing conversion is a promising approach to unlock the theoretical potentials of I2/I- redox couple in aqueous Fe-I2 electrochemistry. However, most reported results only obtain one directional efficient iodine conversion and cannot realize a balance of fully reduction and reoxidation, thereby resulting in rapid capacity decay and/or low Coulombic Efficiency.
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