论文著作:
(1) Li, W.; Li, Z.; Yang, F.; Fang, X.; Tang, B. Synthesis and electrochemical performance of SnOx quantumdots@UiO-66 hybrid for lithium ion battery applications. ACS Applied Materials & Interfaces. 2017, 9, 35030-35039.
(2) Li, W.; Yang, F.; Fang, X.; Rui, Y.; Tang, B. Systematic post-synthetic modification of metal-organic framework (ZIF-67) with superior cyclability for lithium-ion batteries. Electrochimica Acta. 2018, 282, 276- 285.
(3) Li, W.; Li, H.; Yang, F.; Rui, Y.; Tang, B. Facile preparation of four SnOx-C hybrids with superior electrochemical performance for lithium-ion batteries. Electrochimica Acta. 2018, 288, 20-30. (4) Li, W.; Yang, F.; Rui, Y.; Tang, B. Strong covalent interaction Fe2O3/nitrogen-doped porous carbon fiber hybrids as free-standing anodes for lithium-ion batteries. Journal of Materials Science. 2019, 54, 6500-6514.
(5) Li, W.; Sun, L.; Liu, C.; Rotaru, A.; Robeyns, K.; Singleton, M.; Garcia, Y. Supramolecular FeII4L4 cage for fast ammonia sensing. Journal of Materials Chemistry C. 2022, 10, 9216 - 9221.
(6) Li, W.; Liu, C.; Kfoury, J.; Oláh J.; Robeyns, K.; Singleton, M.; Demeshko, S.; Meyer, F.; Garcia, Y. A spin crossover FeII4L6 cage based on pyridyl-hydrazone sites. Chemical Communications. 2022, 28, 11653-11656. (7) Li, W.; Rotaru, A.; Wolff, M.; Demeshko, S.; Meyer, F.; Garcia, Y. From a mononuclear FeIIL2 complex to a spin crossover FeII4L6 cage by symmetric ligand architecture modification: insights into the ammonia gas sensing mechanism. Journal of Materials Chemistry C. 2023, 11, 11175 - 11184.
(8) Li, W.; Robeyns, K.; Wolff, M.; Kfoury, J.; Oláh J.; Demeshko, S.; Meyer, F.; Garcia, Y. Spin-state versatility in FeII4L6 supramolecular cages with pyridyl-hydrazone ligand scaffold modulated by solvents and counter anions. Dalton Transactions. 2024, 53, 1449-1459.
(9) Ye, W.; Li, W.; Wang, K; Yin, W.; Chai,W.; Qu, Y.; Rui. Y.; Tang, B. Metal organic framework hosted ZIF-67@Se@MnO2 composite cathode for lithium-selenium batteries with superior cycling stability. The Journal of Physical Chemistry C. 2019, 123, 4, 2048–2055. (Co-first author)
(10) Wang, K.; Li, W.; Ye, W.; Yin, W.; Chai,W.; Qu, Y.; Rui. Y.; Tang, B. Zeolitic-imidazolate framework combined with MnO2 as the sulfur host material with excellent performance in lithium-sulfur batteries. Journal of Alloys and Compounds. 2019, 793, 16-23. (Co-first author)
(11) Yin, W; Li, W.; Tang, B. FeS2@porous octahedral carbon derived from metal-organic framework as a stable and high capacity anode for lithium-ion batteries. Electrochimica Acta. 2019, 318, 673-682. (Co-first author)