论文著作:
[1] Xuewen Yu, Dianbo Ruan, Changcheng Wu, Jing Wang, Zhiqiang Shi*. Spiro-(1, 1′)-bipyrrolidinium tetrafluoroborate salt as high voltage electrolyte for Electric double layer capacitors.Journal of Power Sources. 2014. 265:309-316. (IF: 6.217)
[2] Yan Guo, Zhi-qiang Shi*, Ming-ming Chen, Cheng-yang Wang*. Hierarchical porous carbon derived from sulfonated pitch for electrical double layer capacitors. Journal of Power Sources. 2014, 252:235-243. (IF: 6.217)
[3] Juan Jin, Baojun Yu, Zhiqiang Shi*, Chengyang Wang*, Chuan-bin Chong. Lignin-based electrospun carbon nanofibrous webs as free-standing and binder-free electrodes for Sodium Ion Batteries. Journal of Power Sources. 2014, 272:800-807. (IF: 6.217)
[4] Zhi-qiang Shi*, Jin Zhang, Jing Wang, Jingli Shi, Chengyang Wang. Effect of the capacity design of activated carbon cathode on the electrochemical performance of lithium-ion capacitors. Electrochimica Acta. 2015.153: 476-483. (IF: 4.504, Top:2)
[5] Zhiqiang Shi*, Xuewen Yu, Jing Wang, Hairan Hu, Changcheng Wu. Excellent low temperature performance electrolyte of spiro-(1,1′)-bipyrrolidinium tetrafluoroborate by tunable mixtures solvents for electric double layer capacitor. Electrochimica Acta. 2015. 174: 215-220. (IF: 4.504, Top:2)
[6] Xuewen Yu, Jing Wang, Chenglin Wang, Zhiqiang Shi*. A novel electrolyte used in high working voltage application for electrical double-layer capacitor using spiro-(1,1′)-bipyrrolidinium tetrafluoroborate in mixtures solvents. Electrochimica Acta. 2015, 182:1166–1174. (IF: 4.504)
[7] Jin Zhang, Hongzhao Wu, Jing Wang, Jingli Shi, Zhiqiang Shi*. Pre-lithiation design and lithium ion intercalation plateau utilization of mesocarbon microbeads anode for lithium-ion capacitors. Electrochimica Acta. 2015, 182: 156-162. (IF: 4.504)
[8] Jin Zhang , Zhiqiang Shi*, Cheng-yang Wang*. Effect of pre-lithiation degrees of mesocarbon microbeads anode on the electrochemical performance of lithium-ion capacitors. Electrochimica Acta.2014, 125:22-28.(IF: 4.086)
[9] Jing Wang, Yihuan Wu, Zhiqiang Shi*, Changcheng Wu. Mesoporous carbon with large pore volume and high surface area prepared by a co-assembling route for Lithium-Sulfur Batteries. Electrochimica Acta. 2014.144:307-314. (IF: 4.086)
[10] Juan Jin, Zhiqiang Shi*, Chengyang Wang*. Electrochemical Performance of Electrospun carbon nanofibers as free-standing and binder-free anodes for Sodium-Ion and Lithium-Ion Batteries. Electrochimica Acta. 2014.141:302-310. (IF: 4.086)
[11] Jin Zhang, Zhiqiang Shi*, Jing Wang, Jingli Shi. Composite of mesocarbon microbeads/hard carbon as anode material for lithium ion capacitor with high electrochemical performance. Journal of Electroanalytical Chemistry. 2015,747:20-28. (IF: 3.235, Top: 3)
[12] Ting-ting Qin, Zhi-qiang Shi*, Ming-wei Li, Cheng-yang Wang*. Effect of reduction heat treatment in H2 atmosphere on structure and electrochemical properties of activated carbon. J Solid State Electrochem.2015, 19 (5): 1437-1446. (IF: 2.509, Top: 2)
[13] Xuan Wu, Zhi-qiang Shi*, Cheng-yang Wang*, Juan Jin. Nanostructured SiO2/C composites prepared via electrospinning and their electrochemical properties for lithium ion batteries. Journal of Electroanalytical Chemistry. 2015,746:62-67. (IF: 3.235, Top: 3)
[14] Yajin Hao, Zhiqiang Shi, Jing Wang*, Qiang Xu*. One step production of in-situ nitrogen doped mesoporous carbon confined sulfur for lithium-sulfur batteries. RSC Advances.2015, 5: 31629-31636. (IF: 2.936).
[15] He-liang Wang, Zhi-qiang Shi*, Juan Jin, Cheng-yang Wang*. Properties and Sodium insertion behavior of Phenolic Resin-based hard carbon microspheres obtained by a hydrothermal method. Journal of Electroanalytical Chemistry. 2015, 755: 87-91. (IF: 3.235)
[16] Zhiqiang Shi*, Chuan-bin Chong, Jing Wang, Chengyang Wang, Xuewen Yu. Electrospun Pitch/Polyacrylonitrile composite carbon nanofibers as high performance anodes for lithium-ion batteries. Materials Letters. 2015, 159: 341-344. (IF: 2.687, Top: 2)
[17] Juan Jin, Zhi-qiang Shi*, Cheng-yang Wang*.The structure and electrochemical properties of carbonized polyacrylonitrile microspheres. Solid State Ionics.2014, 261:5-10. (IF: 2.751, Top: 2)
[18] Jin Zhang, Xifeng Liu, Jing Wang, Jingli Shi, Zhiqiang Shi*. Different types of pre-lithiated hard carbon as negative electrode material for lithium-ion capacitors. Electrochimica Acta. 2015. 187:134-142. (IF: 4.504, Top: 1)
[19] Man Zhao, Jing Wang*, Chuanbin Chong, Xuewen Yu, Lili Wang, Zhiqiang Shi*.
An electrospun lignin/polyacrylonitrile nonwoven composite separator with high porosity and thermal stability for lithium-ion batteries. RSC Advances. 2015, 5: 101115–101120. (IF: 2.936, Top: 3)
[20] Lili Wang, Zhiqiang Shi*, Chuanbin Chong, Jing Wang, Jie Pana*, Phenolic formaldehyde resin/graphene composites as lithium-ion batteries anode. Materials Letters. 2016, 170: 217-220. (IF: 2.687, Top: 2)
[21] Fang Cheng, Xuewen Yu, Zhiqiang Shi*, Changcheng Wu*. A novel supercapacitor electrolyte of spiro-(1,1')-bipyrolidinium tetrafluoroborate in acetonitrile/dibutyl carbonate mixed solvents using for ultra-low temperature application. Electrochimica Acta. 2016, 200: 106-114. (IF: 4.504)
[22] Qingyin Zhang*, Peng Xie, Xin Wang, Xuewen Yu, Zhiqiang Shi*, Shihuai Zhao. Thermodynamic and transport properties of Spiro-(1,1')-bipyrrolidinium tetrafluoroborate and acetonitrile mixtures: A molecular dynamics study. Chinese Physics B. 2016. 25(6):066102-8(IF:1.321, 四区)
[23] Miaolun Jiao, Kunlin Liu, Zhiqiang Shi*, Chengyang Wang*. SiO2/carbon composite microspheres with hollow core-shell structure as high stability electrode for lithium ion batteries. ChemElectroChem. 2017, 4(3):542-549. (IF: 4.446, Top: 2)
[24] Zhi-qiang Shi*, Guoqiang Jin, Jing Wang, Jin Zhang. Free-standing, welded mesoporous carbon nanofibers as anode for high-rate performance Li-ion batteries. Journal of Electroanalytical Chemistry.2017, 795:26-31. (IF: 3.235, Top: 3)
[25] Miaolun Jiao, Qi Jie, Zhiqiang Shi*, Chengyang Wang*. Three-dimensional Si/hard-carbon/graphene network as high-performance anode material for lithium-ion batteries. Journal of Materials Science. 2018 (3) :2149-2160.(IF: 2.993, Top: 2)
[26] Jin Zhang, Zhi-qiang Shi*, Jing Wang, Jing-li Shi. Mesoporous carbon material as cathode for high performance lithium-ion capacitor. Chinese Chemical Letters.2018. 29 (4): 620–623. (IF:2.631, Top: 4)
[27] Jin Zhang, Jin Wang, Zhi-qiang Shi*, Zhiwei Xu. Electrochemical behavior of lithium ion capacitor under low temperature. Journal of Electroanalytical Chemistry. 2018, 817:195-201. (IF: 3.235, Top: 3) (10.1016/j.jelechem.2018.04.014;15 May 2018)
[28] Guoxia Lv, Jing Wang, Zhiqiang Shi, Liping Fan. Intercalation and delamination of two-dimensional MXene (Ti3C2Tx) and aplication in sodium-ion batteries. Materials Letters,2018,219:45-50.(IF: 2.687, Top: 2)
[29] Yongfang Niu, Jing Wang, Jin Zhang, Zhiqiang Shi*. Graphene quantum dots as a novel conductive additive to improve the capacitive performance for supercapacitors. Journal of Electroanalytical Chemistry. 2018, 828:1-10. (IF: 3.235,Top: 3)
[30] Wang Jing, Yan Lei, Ren Qingjuan, Fan Linlin, Zhang Fuming, Zhi-qiang Shi*. Facile hydrothermal treatment route of reed straw-derived hard carbon for high performance sodium ion battery. Electrochimica Acta. 2018, 291:188-196. (IF: 5.116, Top: 1)
[31] Pei Wang, Liping Fan, Lei Yan, Zhiqiang Shi. Low-cost water caltrop shell-derived hard carbons with high initial coulombic efficiency for sodium-ion battery anodes. Journal of Alloys and Compounds. 2019, 775: 1028-1035. (IF: 3.779, Top: 2)