副教授
硕士生导师
教师拼音名称:zhangzhonghua
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所在单位:新能源材料与器件教研室
学历:博士研究生
办公地点:材料学院楼215A
性别:男
联系方式:15092410550
学位:工学博士
职称:副教授
毕业院校:中国科学院大学
学科:材料科学与工程其他专业
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2023-09-15 2023 年度山东省优秀研究生导师
2022-12-30 2022年山东省优秀硕士学位论文指导教师
2022-03-01 2021年度校级先进工作者
2020-06-01 2019年度校级先进工作者
最后更新时间:..
关键字:电池; 金属镁负极; 电解液
摘要:Electrolyte chemistries, including the composition of chemical species and their transformation processes, are of utmost importance for safe and stable operation of any battery, but the corresponding understanding remains incomplete. Prevalent viewpoints on direct solvation are not satisfactory sometimes in describing the implicit relationship among solvents, active ionic species and electrode/electrolyte interphases. Here we report the synergy between the coordination and trace ionization of amine/ether co-solvents to enable a reversible magnesium (Mg)-metal anode for low cost rechargeable Mg batteries. Unique bivalent [Mg(amino)6]2+ is firstly identified as the active ionic species via single-crystal X-ray diffraction, mass spectroscopy, and NMR tests. Partially protonated alkylamine/ether cations, formed due to trace solvent ionization, can chemically associate with the trifluoromethanesulfonimide (TFSI) anion to form neutrally charged ion pairs, mitigating the decomposition of the TFSI anion on the Mg-metal anode. Cryo-electron microscopy images along with the deuterium-oxide (D2O) titration tests reveal a much thin electrolyte-anode interface and one distinctive component of MgH2 in electrodeposits, closely related to the ionization process of co-solvents. A much better Mg plating/stripping reversibility (an overpotential of similar to 0.10 V vs. similar to 2.0 V for the pristine electrolyte) and prolonged cycle life (similar to 320 h vs. similar to 38 h for the pristine electrolyte) are achieved by regulating the coordination/ionization processes of co-solvents. The synergy between coordination and trace ionization induces active ionic species formation and simultaneously alleviates electrolyte decomposition.
卷号:17
期号:2
是否译文:否