Please refer to the Google Scholar for the full publications:
https://scholar.google.com/citations?user=e9aY4HQAAAAJ&hl=en
Please refer to the Google Scholar for the full publications:
https://scholar.google.com/citations?user=e9aY4HQAAAAJ&hl=en
(only present the first author paper, please check https://scholar.google.com/citations?hl=en&user=e9aY4HQAAAAJ&view_op=list_works&sortby=pubdate for full publications)
15. L. Mu#, J. Zhang#, Y. Xu, C. Wei, M.M. Rahman, D. Nordlund, Y. Liu*, F. Lin*, Resolving Charging Distribution for Compositionally Heterogeneous Battery Cathode Materials, Nano Letters, 2022, 22 (3), 1278-1286
14. L. Mu*, Z. Yang, L.Tao, C. K Waters, Z. Xu, L. Li, S. Sainio, Y. Du, H. L Xin, D. Nordlund, F. Lin*, The Sensitive Surface Chemistry of Co-Free, Ni-rich Layered Oxides: Identifying Experimental Conditions that Influence Characterization Results, Journal of Materials Chemistry A, 2020, 8 (34), 12874-12882
13. L. Mu*, W.H. Kann, C. Kuai, Z. Yang, L. Xi, C.-J. Sun, S. Sainio, M. Avdeev, D. Nordlund, F. Lin*, Structural and Electrochemical Impacts of Mg/Mn Dual Dopants on the LiNiO2 Cathode in Li-Metal Batteries, ACS Applied Materials & Interfaces, 2020, 12, (11), 12874-12882
12. L. Mu, R. Zhang, W.H. Kan, Y. Zhang, L. Li, C. Kuai, B. Zydlewski, M.M. Rahman, C.-J. Sun, S. Sainio, M. Avdeev, D. Nordlund, H.L. Xin, F. Lin*, Dopant Distribution in Co-free High Energy Layered Cathode Materials, Chemistry of Materials, 2019, 31 (23), 9769-9776
11. L. Mu, Q. Hou, Z. Yang, Y. Zhang, M.M. Rahman, D. Kautz, E. Sun, X.W. Du, Y. Du, D. Nordlund, F. Lin*, Water-Processable P2-Na0.67Ni0.22Cu0.11Mn0.56Ti0.11O2 Cathode Material for Sodium Ion Batteries, Journal of the Electrochemical Society, 2019, 166 (2), A251-A257
10. L. Mu, Q. Yuan, C. Tian, C. Wei, K. Zhang, J. Liu, P. Pianetta, M.M. Doeff, Y. Liu*, F. Lin*, Propagation Topography of Redox Phase Transformations in Heterogeneous Layered Oxide Cathode Materials, Nature Communications, 2018, 9, 2810
9. L. Mu, M.M. Rahman, Y. Zhang, X. Feng, X-W Du, D. Nordlund, F. Lin*, Surface Transformation by A Cocktail Solvent Enables Stable Cathode Materials for Sodium Ion Batteries, Journal of Materials Chemistry A, 2018, 6 (6), 2758-2766
8. L. Mu, R. Lin, R. Xu, L. Han, S. Xia, D. Sokaras, J.D. Steiner, T.C Wenig, D. Nordlund, M.M. Doeff, Y. Liu, K. Zhao, H.L. Xin, F. Lin*, Oxygen Release Induced Chemomechanical Breakdown of Layered Cathode Materials, Nano Letters, 2018, 5, 3241-3249
7. L. Mu, X. Feng, R. Kou, Y. Zhang, H. Guo, C. Tian, C.J. Sun, X.W. Du, D. Nordlund, H.L. Xin, F. Lin*, Deciphering the Cathode–Electrolyte Interfacial Chemistry in Sodium Layered Cathode Materials, Advanced Energy Materials, 2018, 8 (34), 1801975
6. S. Xia#, L. Mu#, Z. Xu, J. Wang, C. Wei, L. Liu, P. Pianetta, K. Zhao, X. Yu, F. Lin#, Y. Liu#, Chemomechanical Interplay of Layered Cathode Materials Undergoing Fast Charging in Lithium Batteries, Nano Energy, 2018, 53, 753-762
5. L. Mu, Y. Lu*, X. Wu, Y. Ding, Y-S Hu*, H. Li, L. Chen, X. Huang, Anthraquinone Derivative as High-performance Anode Material for Sodium-ion Batteries Using Ether-based Electrolytes, Green Energy & Environment, 2017, 3 (1), 63-70;
4. L. Mu, L. Ben, Y.-S. Hu*, H. Li, L. Chen, X. Huang, Novel 1.5 V Anode Materials, ATiOPO4 (A=NH4, K, Na) for Room-temperature Sodium-ion Batteries,Journal of Materials Chemistry A, 2016, 4 (19), 7141-7147; (HOT ARTICLE)
3. Y. R. Qi#, L. Mu#, J. M. Zhao*, Y.-S. Hu, H. Z. Liu*, S. Dai, pH-Regulative Synthesis of Na3(VPO4)2F3 Nanoflowers and Their Improved Na Cycling Stability, Journal of Materials Chemistry A, 2016, 4 (19), 7178-7184
2. L. Mu, S. Y. Xu, Y. M. Li, Y.-S. Hu*, H. Li, L. Chen, X. Huang, Prototype Sodium‐Ion Batteries Using an Air-Stable and Co/Ni-Free O3 Layered Metal Oxide Cathode, Advanced Materials, 2015, 27 (43), 6928-6933, Highly cited
1. Y. R. Qi#, L. Mu#, J. M. Zhao*, Y.-S. Hu*, H. Z. Liu, S. Dai, Superior Na‐Storage Performance of Low-Temperature-Synthesized Na3(VO1−xPO4)2F1+2x (0≤x≤1) Nanoparticles for Na-Ion Batteries, Angewandte Chemie International Edition, 2015, 54 (34), 9911-9916