2022年学术成果
  • 1. Li, H. D.; Lai, Y. Z.; Li, H. Y.; Yang, Q.; Yang, Z. W.; Zheng, Z.; Liu, Y.; Sun, Y.; Zhong, B. H.; Wu, Z. G.; Guo, X. D., The Size Effects of Si Particles on the Final Si@C Composite Anode. Ind. Eng. Chem. Res. 2022, 61(36).
  • 2. Qiu, L.; Zhang, M. K.; Song,Y.; Wu, Z. G.; Hu, K. H.; Yue, L. C.; Zhang, J.; Ming, Y.; Xiang, W.; Wang, G. K.; Liu, Y. X.; Sun, Y.; Guo, X. D., The structure-activity relationship between precursor fine structure and cathode performance in ultra-high Ni layered oxide. Chemical Engineering Science.2022, 260.
  • 3. Zhang, L. C.; Liang, J.; Yue,L. C.; Dong, K.; Li, J.; Zhao, D. L.; Li, Z. R.; Sun, S. J.; Luo, Y. S.; Liu, Q.; Cui, G. W.; Alshehri, Q. Q.; Guo, X. D.; Sun, X. P., Benzoate anions-intercalated NiFe-layered double hydroxide nanosheet array with enhanced stability for electrochemical seawater oxidation. Nano Research Energy. 2022, 1: e9120028.
  • 4. Hu, K. H.; Ren, L.; Fan, W. F.; Zhang, B. Zuo, M. H.; Zhang, Y. H.; Lv, G. P.; Xu, H. Y.; Xiang, W.; Guo, X. D., Tuning redox activity through delithiation induced protective layer and Fe-O coordination for Li-rich cathode with improved voltage and cycle performance. Journal of Energy Chemistry. 2022, 71.
  • 5. Li, H. D.; Li, H. Y.; Lai, Y. Z.; Yang, Z. W.; Yang, Q.; Liu, Y.; Zheng, Z.; Liu, Y. X.; Sun, Y.; Zhong, B. H.; Wu, Z. G.; Guo, X. D., Revisiting the Preparation Progress of Nano-Structured Si Anodes toward Industrial Application from the Perspective of Cost and Scalability. Adv. Energy Mater.2022, 12.
  • 6. Lai, Y. Z.; Li, H. Y.; Yang, Q.; Li, H. D.; Liu, Y. X.; Song, Y.; Zhong, Y. J.; Zhong, B. H.; Wu, Z. G.; Guo, X. D., Revisit the Progress of Binders for a Silicon-Based Anode from the Perspective of Designed Binder Structure and Special Sized Silicon Nanoparticles. Ind. Eng. Chem. Res. 2022, 61(19).
  • 7. Wang, D. Q.; Wu, Y. Q.; Wu, C.; Ye, Z. C.; Yang, L. W.; Li, Y.; Dong, R.; Wu, Z. G.; Sun, Y.; Song, Y.; Guo, X. D., Highly Oriented {010} Crystal Plane Induced by Boron in Cobalt-Free Li- and Mn-Rich Layered Oxide. ACS Appl. Mater. Interfaces. 2022, 14.
  • 8. Li, H. D.; Li, H. Y.; Yang, Z. W.; Lai, Y. Z.; Yang, Q.; Duan, P. X.; Zheng, Z.; Liu, Y.; Sun, Y.; Zhong, B. H.; Wu, Z. G.; Guo, X. D., Controlled synthesis of mesoporous Si/C composites anode via confining carbon coating and Mg gas reduction. Journal of Colloid and Interface Science.2022, 627.
  • 9. Yue, L. C.; Wang, Z. X.; Wang, D.; Song, W.; Wu, Z. G.; Zhao, W. X.; Zhang, L. C.; Luo, Y. S.; Sun, S. J.; Zheng, D. D; Zhong, B. H.; Zhao, J. Q.; Liu, Q.; Asiri, A. M.; Guo, X. D.; Sun, X. P., Aliovalent doping engineering enables multiple modulations of FeS2 anodes to achieve fast and durable sodium storage. J. Mater. Chem. A, 2022, 10, 21149–21160.
  • 10. Liu, Y. L.; Wang, D.; Li, P.; Liu, Y. H.; Sun, Y.; Liu, Y.; Zhong, B. H.; Wu, Z. G.; Guo, X. D., The Relationship between Initial Coulombic Efficiency and Transition Metal Ion Redox in P2-Na0.85[Cu0.1FexMn1–x]O2 Cathodes. Ind. Eng. Chem. Res. 2022, 61(31).
  • 11. Wu, C.; Li, R.; Chen, T.; Hu, T. Z.; Wang, D. Q.; Qiu, L.; Zhong, B. H.; Wu, Z. G.; Guo, X. D., Understanding of the Irreversible Phase Transition and Zr-Doped Modification Strategy for a Nickel-Rich Cathode under a High Voltage. ACS Sustainable Chem. Eng. 2022, 10(11).
  • 12. Li, S.; Shi, X. Y.; Tang, Z. P.; Li, D. X.; Zhang, Y. C.; Xiao, Y.; Song, Y.; Zheng, Z.; Zhong, Y. J.; Wu, Z. G.; Zhong, B. H.; Guo, X. D., Simultaneous enhancement of initial Coulombic efficiency and cycling performance of silicon-based anode materials for lithium-ion batteries. Applied Surface Science.2022, 585
  • 13. Wu, C.; Qiu, L.; Wang, D. Q.; Chen, T.; Li, J.; Wu, Z. G.; Song, Y.; Guo, X. D., New Insight into High-Rate Performance Lithium-Rich Cathode Synthesis through Controlling the Reaction Pathways by Low Temperature Intermediates. Ind. Eng. Chem. Res. 2022, 61(1).
  • 14. Wang, X.; Yang, L. W.; Li, Q.; Wang, Y.; Zhong, Y. J.; Song, Y.; Chen, Y. X.; Wu, Z. G.; Zhong, B. H.; Guo, X. D., TiO2@Chlorella-Based Biomass Carbon Modified Separator for High-Rate Lithium–Sulfur Batteries. Ind. Eng. Chem. Res. 2022, 61, 1761−1772.
  • 15. Wang, X.; Yang, L. W.; Li, R.; Chen, Y. X.; Wu, Z. G.; Zhong, B. H.; Guo, X. D., Heteroatom-doped Ginkgo Folium porous carbon modified separator for high-capacity and long-cycle lithium-sulfur batteries. Applied Surface Science. 2022,602.
  • 16. Yang, W.; Li, H. D.; Wang, D.; Xu, C. L.; Xiang, W.; Song, Y.; He, F. R.; Zhang, J.; Zheng, B. P.; Zhong, B. H.; Wu, Z. G.; Guo, X. D., Ta Induced Fine Tuning of Microstructure and Interface Enabling Ni-rich Cathode with Unexpected Cyclability in Pouch-type full cell. Nano Energy. 2022,104.
  • 17. Zhang, L. C.; Zhou, Q.; Liang, J.; Yue, L. C.; Li, T. S.; Luo, Y. S.; Liu, Q.; Li, N.; Tang, B.; Gong, F.; Guo, X. D.; Sun, X. P., Enhancing Electrocatalytic NO Reduction to NH3 by the CoS Nanosheet with Sulfur Vacancies. Inorg. Chem. 2022, 61.
  • 18. Xu, C. L.; Zhao, J. M.; Wang, Y. A.; Hua, W. B.; fu, Q.; Liang, X. M.; Rong, X. H.; Zhang, Q. Q.; Guo, X. D.; Yang, C.; Liu, H. Z.; Zhong, B. H.; Hu, Y. S., Reversible Activation of V4+/V5+ Redox Couples in NASICON Phosphate Cathodes. Adv. Energy Mater.2022, 12.
  • 19. Wang, R. Y.; Li, H. Y.; Wu, Y. Q.; Li, H. D.; Zhong, B. H.; Sun, Y.; Wu, Z. G.; Guo, X. D., How to Promote the Industrial Application of SiOx Anode Prelithiation: Capability, Accuracy, Stability, Uniformity, Cost, and Safety. Adv. Energy Mater. 2022, 2202342.
  • 20. Wang, Q. W.; Yang, L. W.; Li, H. Y.; Chen, D. Q.; Sun, Y.; Liu, Y.; Liu, Y. X.; Zhao, X. H.; Wu, Z. G.; Guo, X. D., Tuning the Delithiation State of LiNi0.5Co0.2Mn0.3O2 Enabling the Electronic Structure Modification to Enhance the Conversion of Polysulfides in a Lithium–Sulfur Battery. Ind. Eng. Chem. Res. 2022, 61.
  • 21. Liu, Y. L.; Wang, D.; Li, H. Y.; Li, P.; Sun, Y.; Liu, Y.; Liu, Y. X.; Zhong, B. H.; Wu, Z. G.; Guo, X. D., Research progress in O3-type phase Fe/Mn/Cu-based layered cathode materials for sodium ion batteries. J. Mater. Chem. A, 2022, 10.
  • 22. Qiu, L .; Song, Y.; Zhang, M. K.; Liu, Y. H .; Yang, Z. W.; Guo, X. D.; Zhang, H .; Xiang , W.; Liu, Y. X.; Wang, G. K.; Sun, Y.; Zhang, J.; Zhang ,B., Structural Reconstruction Driven by Oxygen Vacancies in Layered Ni-Rich Cathodes. Adv. Energy Mater.2022, 12.
  • 23. Yue, L. C.; Wang, D.; Wu, Z. G.; Zhao W. X.; Ren, Y. C.; Zhang, L. C.; Zhong, B. H.; Li, N .; Tang ,B.; Liu, Q.; Luo, Y. L.; Asiri, A. M.; Guo, X. D.; Sun, X. P., Polyrrole-encapsulated Cu2Se nanosheets in situ grown on Cu mesh for high stability sodium-ion battery anode. Chemical Engineering Journal.2022, 433
  • 24. Chen, T.; You, J. H.; Li , R.; Li, H. Y.; Wang, Y .; Wu, C.; Sun, Y.; Yang, L.; Ye, Z. C.; Zhong, B. H.; Wu, Z. G.; Guo, X. D., Ultra-Low Concentration Electrolyte Enabling LiF-Rich SEI and Dense Plating/Stripping Processes for Lithium Metal Batteries. Adv. Sci.2022, 9.
  • 25. Dong, R.; Zheng, J.; Yuan, J. L.; Li, Y.; Zhang, T. W.; Liu, Y.; Liu, Y. X.; Sun, Y.; Zhong, B. H.; Chen, Y. X.; Wu, Z. G.; Guo, X. D., A polyethylene oxide/metal-organic framework composite solid electrolyte with uniform Li deposition and stability for lithium anode by immobilizing anions. Journal of Colloid and Interface Science.2022, 620.
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