1.Yun Yang, Qian Wu, Dong Wang, Chenchong Ma, Zheng Chen, Caizhen Zhu, Yuan Gao, Cuihua Li*. Decoupling the mechanical strength and ionic conductivity of an ionogel polymer electrolyte for realizing thermally stable lithium-ion batteries [J], Journal of Membrane, 2020, 595: 117549
2.Yun Yang, Qian Wu, Dong Wang, Chenchong Ma, Zheng Chen, Qinting Su, Caizhen Zhu, Cuihua Li*. Ionic liquid enhanced composite solid electrolyte for high-temperature/long-life/ dendrite-free lithium metal batteries [J], Journal of Membrane, 2020,612: 118424.
3.Liang Dong, Cuihua Li* , Fuxiao Liang, Jianhong Liu, Dong Wang, Dayong Gui, Caizhen Zhu Safe Hybrid Electrolytes Based on Ionic Liquid and Carbonate Solvents for High-Temperature Li-rich Lithium-Ion Battery [J], Int. J. Electrochem. Sci., 2020, 15 2948 – 2960;
4.Dong Wang, Cuihua Li*, Chenchong Ma, Fuxiao Liang, Liang Dong, Caizhen Zhu, Yuan Gao. Cycle performance of a Li/Li-rich half-battery with N-allyl-N-methyl piperidinium bis(trifluoromethanesulfonyl) imide protected by a high-temperature solid electrolyte interface membrane [J], J. Power Sources, 2019, 434:226747;
5.Chenchong Ma, Dong Wang, Yun Yang, Qian Wu, Zheng Chen, Caizhen Zhu, Yuan Gao, Cuihua Li*. Enhanced Electrochemical Performance of LiNi0.8Co0.1Mn0.1O2 Cathode with an Ionic Liquid-Based Electrolyte [J]. Journal of the Electrochemical Society, 2019, 166(14): A3441-A3447
6.Fuxiao Liang,Jiali Yu,Dong Wang,Liang Dong,Chenchong Ma,Jiahui Chen,BinbinYang,Caizhen Zhu,Yuan Gao,Cuihua Li*.Exceptional cycling performance of a graphite/Li1.1Ni0.25Mn0.65O2battery at high voltage with ionic liquid-based electrolyte [J]. Electrochimica Acta, 2019, 307:83-91
7.FuxiaoLiang, Jiali Yu, JiahuiChen, Dong wang, ChendongLin, CaizhenZhu, MingliangWang, Liang Dong, Cuihua Li*. A novel boron-based ionic liquid electrolyte for high voltage lithium-ion batteries with outstanding cycling stability [J],Electrochimica Acta, 2018, 283: 111-120
8.Liang Dong, Fuxiao Liang, Dong Wang, Caizhen Zhu, Jianhong Liu, Dayong Gui, Cuihua Li*. Safe ionic liquid-sulfolane/LiDFOB electrolytes for high voltage Li1.15(Ni0.36Mn0.64)0.85O2Lithium ion battery at elevated temperatures [J], Electrochimica Acta, 2018, 270: 426-43
9.Jiahui Chen, Fuxiao Liang, Hui Zhang, Jianhong Liu, Cuihua Li*. Allyloxytrimethylsilane as an electrolyte additive for enhancing electrochemical performance of high voltage spinel cathode [J]. Int. J. Electrochem. Sci., 2017, 12, 7249 -7261.
10.Jiahui Chen, Hui Zhang, Jianhong Liu, Cuihua Li*, Peixin Zhang*.Improving the electrochemical performance of high voltage spinel cathode at elevated temperature by a novel electrolyte additive [J], J. Power Sources, 2016, 303:41-48(SCI, IF 6.217).
11.Zhenfeng Wang, Jianhong Liu*, Cuihua Li*, Peixin Zhang*, Haitao Zhuo.Enhanced performance of LiNi1/3Co1/3Mn1/3O2cathodes at elevated temperatures using an imidazolium-based electrolyte with lithium difluoro(oxalate)borate [J]. Int. J. Electrochem. Sci., 2016, 11: 6149-6163
12.Jiahui Chen, Yuan Gao, Cuihua Li*, Hui Zhang, Jianhong Liu*, Qianling Zhang. Interface modification in high voltage spinel lithium-ion battery by using N-methylpyrrole as an electrolyte additive [J], Electrochimica Acta, 2015, 178(10): 180-186 (SCI, IF 4.504).
13.Binbin Yang, Cuihua Li*, Jianhong Liu*, Qianling Zhang. Stabilized cycling performance of LiFePO4 cathode in ionic liquid electrolyte containing additives for lithium ion batteries [J], Electrochimica Acta, 2014, 148(12): 39-45.
14.Liu H, Shi L, Han P, et al. Hierarchically porous carbon derived from waste acrylic fibers for super-high capacity lithium ion battery anodes[J]. Chemical Engineering Journal, 2018, 346: 143-150.
15.Liu H, Shi L, Li D, et al. Rational design of hierarchical ZnO@Carbon nanoflower for high performance lithium ion battery anodes[J]. Journal of Power Sources, 2018, 387: 64-71.
专利:
1.一种表征HTPB聚氨酯粘接界面老化反应的方法,深圳大学,ZL 201310265655.7, 授权公告日2015.07
2.HTPB聚氨酯粘接界面不饱和双键化学变化的表征方法,深圳大学,ZL 201310469504.3, 授权公告日2015.08
3.一种原位漫反射红外光谱表征聚氨酯固化反应的方法,深圳大学,ZL 201210467593.3,授权公告日2015.08