论著成果 |
[1] Junru Wu, Baohua Li*, et al., A synergistic exploitation to produce high-voltage quasi-solid-state lithium metal batteries. Nature Communications, 2021, 12, 5746. [2] Junru Wu, Baohua Li*, et al., Unique tridentate coordination tailored solvation sheath toward highly stable lithium metal batteries, Advanced Materials, 2023, 35, 2303347. [3] Junru Wu, Baohua Li*, et al., Rational electrolyte design toward cyclability remedy for room-temperature sodium–sulfur batteries Angewandte Chemie International Edition, 2022, 61, e202205416. [4] Junru Wu, Baohua Li*, et al., Dilute Ether Electrolyte Regulates Cathode Inner Helmholtz Plane for Stable 4.6 V Lithium Metal Batteries Energy Environmental Science, 2025, 18, 4677. [5] Junru Wu, Baohua Li*, et al., Electrostatic interaction tailored anion-rich solvation sheath stabilizing high-voltage lithium metal batteries. Nano-Micro Letters, 2022, 14,147. [6] Pauline Jaumaux†, Junru Wu† (Co-first), Baohua Li*, et al., Non-flammable liquid and quasi-solid electrolytes toward highly-safe alkali metal-based batteries. Advanced Functional Materials, 2021, 31, 2008644. [7] Xianshu Wang†, Junru Wu† (Co-first), Baohua Li*, et al., Non-solvating fluorosulfonyl carboxylate enables temperature-tolerant lithium metal batteries Journal of Energy Chemistry, 2023, 82, 287. |