科学研究:承担国家自然科学基金项目(青年科学基金,C类)1项,重庆市青年项目1项,发表高水平学术论文7篇。指导研究生1名。
代表性学术成果:
1. Qing Li; Zhipeng Ma; Ming Liu; Yajie Jiang; Minhao Fu; Yuqian Fan; Xiujuan Qin; Ailing
Song; Guangjie Shao; Yuxi Xu; High Spin-State Modulation of Catalytic Centers by Weak Ligand Field for Promoting Sulfur Redox Reaction in Lithium-Sulfur Batteries, Angewandte Chemie, 2024,64(4).
2. Qing Li; Jianghong Zhang; Siyu Zhu; Ailing Song; Zhipeng Ma; Lei Dai; Yizhong Huang;
Imran Shakir; Guangjie Shao; Yuxi Xu; Breaking the Spin Blockade: Ferromagnetic NiF2 Electrocatalyst with Exchange-Upgraded d-π Coupling for Electrocatalytic Sulfur Conversion, Advanced Functional Materials, 2025.
3. Qing Li; Minhao Fu; Xiujuan Qin; Ailing Song; Yuqian Fan; Zhipeng Ma; Guangjie Shao; A unique three-dimensional network double-core -shell structure S@MnO2@MXene suppresses the shuttle effect in high-sulfur-content high-performance lithium-sulfur batteries, Journal of
Colloid and Interface Science, 2024, 674(无): 805-812.
4. Qing Li; Zhipeng Ma; Jiaojiao Li; Zhan Liu; Lukai Fan; Xiujuan Qin; Guangjie Shao;
Core−Shell-Structured Sulfur Cathode: Ultrathin δ-MnO2 Nanosheets as the Catalytic Conversion Shell for Lithium Polysulfides in High Sulfur Content Lithium−Sulfur Batteries, ACS Applied Materials amp; Interfaces, 2020, 12(31): 35049-35057.
5. Qing Li; Zhipeng Ma; Jinghao Zhao; Ke Shen; Tianqi Shi; Yuzhi Xie; Yuqian Fan; Xiujuan
Qin; Guangjie Shao; A flexible self-supporting ultralong MnO2 nanowires-expanded graphite
nanosheets current collector with enhanced catalytic reaction kinetics for high-loading lithium-
sulfur batteries, Journal Of Power Sources, 2022, 521.
6. Yao Zhao, Qing Li, Zhan Liu, Lukai Fan, Jiaojiao Li, Zhipeng Ma, Xiujuan Qin, Guangjie Shao; Stable Electrochemical Li Plating/Stripping Behavior by Anchoring MXene Layers on Three-Dimensional Conductive Skeletons. ACS Appl. Mater. Interfaces 26 August 2020; 12 (34): 37967–37976.
7. Lu, Y.; Zhang, J.; Xiu, M.; Zhu, S.; Cao, X.; Xia, J.; Kamaruddin, H.; Zhou, Z.R.; Kwon, C.; Du, T. Q.; et al. Laser‐Induced Liquid Metal Shaping of Strain‐Rich High‐Entropy Alloy Nanowires for Electrocatalysis and Bioelectrochemical Sensing. Advanced Functional Materials 2026.