论文著作:
[1] Zhengkui Li,Wei Xiao*, Xifei Li*, et al,Spontaneouspassivation onhigh-voltagemanganese-basedlayeredoxidecathodes viaselectivesurfacedoping forpotassium-ionbatteries,Chemical Engineering Journal, 2025, 507,160414
[2] Zhengkui Li,Wei Xiao*, Xifei Li*, et al,Balancing the Redox Activity against Structure Stability in High-Voltage Manganese/Iron-based Layered Oxide Cathodes through Copper Doping for Potassium-ion Batteries,Journal of Power Sources, 2024,624,235542
[3] Peiyi Shi,Wei Xiao*, Xifei Li*,et al,Simultaneously Manipulating Carbon Coating Layers and Void Structures in Silicon/Carbon Anode Materials via Bifunctional Templates for Lithium-ion Batteries,Applied Surface Science, 2024, 655, 159538
[4] Wei Xiao, Jiujun Zhang*, Xifei Li*,et al,Regulating solid electrolyte interphases on phosphorus/carbon anodes via localized high-concentration electrolytes for potassium-ion batteries,Journal of Energy Chemistry, 2023, 78, 589-605.
[5] Wei Xiao,Xifei Li*,Xueliang Sun*,et al,Constructing high-rate and long-life phosphorus/carbon anodes for potassium-ion batteries through rational nanoconfinement,Nano Energy,2021, 83, 105772
[6] Wei Xiao, Tsun-Kong Sham*,Xueliang Sun*,et al,EngineeringSurface Oxygenated Functionalities on Commercial Carbon toward Ultrafast Sodium Storage in Ether-Based Electrolyte,ACS Applied Materials and Interfaces, 2020, 12, 37116−37127
[7] Wei Xiao,Tsun-Kong Sham*, Xueliang Sun*,et al,Understanding the Critical Role of Binders in Phosphorus/Carbon Anode for Sodium-ion Batteries through Unexpected Mechanism,Advanced Functional Materials, 2020, 30, 2000060
[8] Wei Xiao,Tsun-Kong Sham*, and Xueliang Sun*,et al,Boosting the Sodium Storage Behaviors of Carbon Materials in Ether-based Electrolyte through the Artificial Manipulation of Microstructure,Nano Energy, 2019, 66,104177
[9] Wei Xiao, Xifei Li*,et al,Recent Advances in Li1+xAlxTi2−x(PO4)3Solid-State Electrolyte for Safe Lithium Batteries,Energy Storage Materials, 2019, 19, 379–400
[10] Wei Xiao, Tsun-Kong Sham*,Xueliang Sun*,et al,Utilizing the full capacity of carbon black as anode for Na-ion batteries via solvent co-intercalation,Nano Research,2017, 10, 4378–4387