青岛科技大学  English 
张忠华
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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

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材料科学与工程其他专业

材料学

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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

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Ion recognition enables fast Mg–Cl bond dissociation kinetics and better Mg plating/stripping reversibility

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摘要:Rechargeable Mg-metal batteries hold considerable promise for renewable energy storage and utilization.However,the Mg stripping/plating processes suffer from sluggish ion pairs dissociation kinetics,resulting in poor rate and cycle properties.In this work,an efficient skeleton host containing dissimilar coupling elements with varied electronegativity has been designed to promote interfacial reaction kinetics by accelerating the Mg–Cl bond dissociation process.As a proof-of-concept prototype,the N/O-doped cobalt nanoparticles embedded in carbonaceous polyhedrons has been synthesized via facile high temperature annealing of zeolitic imidazolate framework-67 (ZIF-67).The exposed electron-rich N/O sites and electron-deficient Co sites can regulate the adsorbing structure configuration of[Mg-Cl]~+complex ions by selectively bonding with the Mg~(2+)and Cl~–through chemical coordination linkage,respectively.The elongated bond length from 2.596? to 2.679? and the weakened bond strength are beneficial for the complex ions dissociation,leading to better charge transfer kinetics.In addition,the better magnesiophilic property accompanied by the conductive and porous permeable three-dimensional architecture realizes the homogeneous electrodeposition of Mg and improved electrode kinetics.The decreased overpotential has been verified in both magnesium organohaloaluminates electrolyte (from 290 m V to 189 m V) and conventional Mg(TFSI)_2-based electrolyte (from 600 m V to 200 m V).The designed skeleton host also exhibits excellent long cycle lifespan above 2300 h and extra-high average Coulombic efficiency of 99.65%within700 cycles.The accelerated bond splitting strategy enables improved metal-anode reversibility,which is also insightful to high concentrated or other electrolyte systems that contain abundant ion pairs or aggregates.

卷号:v.12

期号:12

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