论文著作:
1.Liu, Y. T.An, Y., Fang, C., Ye, Y., An, Y., He, M., Jia, Y., Hong, X., Liu, Y., Gao, S., Hao, Y., Chen, J., Zheng, J., Lu, Y., Zou, R., Pang, Q. Nature Chemistry (2025). Surface-localized phase mediation accelerates quasi-solid-state reaction kinetics in sulfur batteries. https://doi.org/10.1038/s41557-025-01735-w.
2.Liu, Y. T., Xu, L., Yu, Y., He, M., Zhang, H., Tang, Y., Xiong, F., Gao, S., Wang, J., Xu, S., Aurbach, D, Zou, R., Pang, Q. (2023) Stabilized Li-S batteries with anti-solvent tamed quasi-solid-state reaction. Joule, 7, 2074-2091.
3.Liu, Y. T., Elias, Y., Meng, J., Aurbach, D., Zou, R., Xia, D. and Pang, Q. (2021). Electrolyte solutions design for lithium-sulfur batteries. Joule 5, 2323-2364.(ESI高被引、热点论文)
4.Liu, Y. T., Liu, S., Li, G. R. and Gao, X. P. (2020). Strategy of enhancing the volumetric energy density for lithium–sulfur batteries. Advanced Materials 33, 2003955.(ESI高被引)
5.Liu, Y. T., Han, D. D., Wang, L., Li, G. R., Liu, S. and Gao, X. P. (2019). NiCo2O4 nanofibers as carbon-free sulfur immobilizer to fabricate sulfur-based composite with high volumetric capacity for lithium–sulfur battery. Advanced Energy Materials 9, 1803477.(ESI高被引)
6.Liu, Y. T., Liu, S., Li, G. R., Yan, T. Y. and Gao, X. P. (2020). High volumetric energy density sulfur cathode with heavy and catalytic metal oxide host for lithium–sulfur battery. Advanced Science 7, 1903693.(ESI高被引)
7.Liu, Y. T., Wang, L., Liu, S., Li, G. R. and Gao, X. P. (2021). Constructing high gravimetric and volumetric capacity sulfur cathode with LiCoO2 nanofibers as carbon-free sulfur host for lithium-sulfur battery. Science China Materials 64, 1343–1354.
8.Liu, Y. T., Gao, S., Hsiao, B. S., Norman, A., Tsou, A. H., Throckmorton, J., Doufas, A. and Zhang, Y. (2018). Shear induced crystallization of bimodal and unimodal high density polyethylene. Polymer 153, 223-231.
9.Liu, Y. T., Yin, L., Zhao, H., Song, G., Tang, F., Wang, L., Shao, H. and Zhang, Y. (2017). Strain-induced structural evolution during drawing of poly(ethylene terephthalate) fiber at different temperatures by in situ synchrotron SAXS and WAXD. Polymer 119, 185-194.
10.Liu, Y. T., Yin, L., Zhao, H., Song, G., Tang, F., Wang, L., Shao, H. and Zhang, Y. (2016). Lamellar and fibrillar structure evolution of poly(ethylene terephthalate) fiber in thermal annealing. Polymer 105, 157-166.