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杨剑
教授 博士生导师 硕士生导师
性别:男
毕业院校:中国科学技术大学
学历:博士研究生毕业
学位:博士生
在职信息:在职
所在单位:化学与化工学院
入职时间: 2011-05-11
所属院系: 化学与化工学院
学科:无机化学
电子邮箱:
80f921ad4ad75401f61563f4985ae3c0f6db00616121c618acb432eba3c70836ec16fc8d6781e9512ca4b0f3d83dae539fa7c0b18a05877f6a4add2e2cce7bca8f06dab640c57a783fddbd87214ce26265d86524a82b2b7c6abcbbd3738a3f7426798f83ef1653f0ab54b116053a5f5a1df0982e01296e6349cfcf6399f21db3
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[1] 赵微. Revealing the Na storage behavior of graphite anodes in low-concentration imidazole-based electrolytes. Chemical Science, 15, 6500-6506, 2024.
[2] . A high potential (2.5 V) carbon fiber paper-based asymmetric supercapacitor with oxygen vacancies and hierarchical porous hollow structure. Chemical Engineering Journal, 496, 2024.
[3] . Surface Engineering on Zinc Anode for Aqueous Zinc Metal Batteries. ChemSusChem, 2024.
[4] Wu, Shuang. Regulating the anion solvation and cathode-electrolyte interphase to improve the reversibility and kinetics of high-voltage dual-ion batteries. 能源存储材料, 72, 2024.
[5] 彭慧丽. Improvements and Challenges of Hydrogel Polymer Electrolytes for Advanced Zinc Anodes in Aqueous Zinc-Ion Batteries. ACS nano, 18, 21779-21803, 2024.
[6] . Bi Nanospheres Embedded in N-Doped Carbon Nanowires Facilitate Ultrafast and Ultrastable Sodium Storage. Advanced Science, 2024.
[7] 郑成. Construction of robust solid-electrolyte interphase via electrode additive for high-performance Sn-based anodes of sodium-ion batteries. 能源存储材料, 67, 2024.
[8] 姚倩. Superior sodiophilicity and molecule crowding of crown ether boost the electrochemical performance of all-climate sodium-ion batteries. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF T, 121, 2024.
[9] 吕丹. Novel titanium vanadate with superior Na+ transport kinetics for rapid charging and low-temperature sodium ion batteries. GREEN ENERGY & ENVIRONMENT, 2024.
[10] 张少杰. Dipole Moment Dictates the Preferential Immobilization in Gel Electrolytes for Ah-level Aqueous Zinc-Metal Batteries. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2024.
[11] 汪冬冬. Bidentate Coordination Enables Anions-Regulated Solvation Structure for Advanced Aqueous Zinc Metal Batteries. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2024.
[12] Li, Fengchun. In Situ Structure Modulation of Cathode-Electrolyte Interphase for High-Performance Potassium-Ion Battery. Advanced Functional Materials, 2024.
[13] Pan, Jun. Strategy Formulation for Mitigating Capacity Fading of Na-Layered Oxides. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2025.
[14] 葛文静. Zn(002)-preferred and pH-buffering triethanolamine as electrolyte additive for dendrite-free Zn anodes. Chemical communication, 2023.
[15] 郑成. Enhancing Low-Temperature Performance of Sodium-Ion Batteries via Anion-Solvent Interactions. Advanced functional materials, 2025.
[16] 汪冬冬. Regulating the Thermodynamic Uniformity and Kinetic Diffusion of Zinc Anodes for Deep Cycling of Ah-Level Aqueous Zinc-Metal Batteries. ACS nano, 2025.
[17] 吕宏宇. Anion-Dipole Repulsions Improve Low-Temperature Performance of u-Sn for Advanced Sodium Ion Batteries. small, 2025.
[18] 孙亚南. Rational Screening of Siloxane Molecules as Electrolyte Additives for High-Temperature Sodium-Ion Batteries. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2025.
[19] 程振杰. Durable Cation Replenishing to Activate Anion Releasing for Enhanced Electrochemical Performance of Dual-Ion Full Batteries. Advanced Functional Materials, 2023.
[20] . Bio-catalyzed oxidation self-charging zinc-polymer batteries. Proc Natl Acad Sci U. S. A., 121, 2024.
共 293 条 1/15
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