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张桥保

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教授
- 入职时间:2016-08-31
- 所在单位:材料学院
- 学历:博士研究生毕业
- 性别:男
- 学位:哲学博士学位
- 在职信息:在职
访问量:
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[1]《高比能二次电池关键材料与先进表征专刊》——主编寄语.储能科学与技术,2024,13(01):2.
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[2]刘俊杰,吴顺情,张桥保.Precisely Tunable Instantaneous Carbon Rearrangement Enables Low-Working-Potential Hard Carbon Toward Sodium-Ion Batteries with Enhanced Energy Density.ADVANCED MATERIALS,2024,
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[3]张桥保,Fluorine Doping Modulating Pore Structure and Adsorption Capability of Carbon Matrix Boosting Potassium Storage Performance of Red Phosphorus Anode.ADVANCED FUNCTIONAL MATERIALS,2024,
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[4]乔羽,张桥保.Achieving High-Capacity Cathode Presodiation Agent Via Triggering Anionic Oxidation Activity in Sodium Oxide.ADVANCED MATERIALS,2024,
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[5]张桥保,Separator functionalization enables high-performance zinc anode via ion-migration regulation and interfacial engineering.CHINESE CHEMICAL LETTERS,2023,35(9):
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[6]张桥保.High-entropy doping promising ultrahigh-Ni Co-free single-crystalline cathode toward commercializable high-energy lithium-ion batteries.Science Advances,2023,10(25):
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[7]张桥保,Self-assembled hydrated copper coordination compounds as ionic conductors for room temperature solid-state batteries.NATURE COMMUNICATIONS,2024,15(1):
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[8]张桥保.Lanthanum doping and surface Li3BO3 passivating layer enabling 4.8 V nickel-rich layered oxide cathodes toward high energy lithium-ion batteries.Journal of Colloid and Interface Science,2023,673386-394.
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[9]张力,方晓亮,张桥保.Organic Anodes with Nearly 100% Initial Coulombic Efficiency Enabled by Wet-Chemically Constructed Artificial Solid-Electrolyte Interphase Film toward High-Energy-Density Organic Full Batteries.Advanced Functional Materials,
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[10]张桥保,Enhanced Fast-Charging and Longevity in Sodium-Ion Batteries through Nitrogen-Doped Carbon Frameworks Encasing Flower-Like Bismuth Microspheres.ADVANCED ENERGY MATERIALS,2024,