电化学储能技术研究中心(筹)
研究成果
1. Al2O3-assisted synthesis of hollow CuCo2S4 nanospheres with rich sulfur vacancies for hybrid supercapacitor
2. Construction of hollow-sphere CuNi2S4 with optimized structure and boosting conductivity for hybrid supercapacitor
3. Zeolitic-imidazolate framework derived Ni–Co layered double hydroxide hollow microspheres with enhanced pseudocapacitive properties for hybrid supercapacitors
4. Tremella-like 2D Nickel–Copper Disulfide with Ultrahigh Capacity and Cyclic Retention for Hybrid Supercapacitors,
5. Piperazine-based two-dimensional covalent organic framework for high performance anodic lithium storage
6. Recent Advances in Transition-Metal-Based Catalytic Material for Room-Temperature Sodium–Sulfur Batteries
7. Molybdenum-Based Catalytic Materials for Li–S Batteries: Strategies, Mechanisms, and Prospects
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