论文著作:
[1]Hong Wang, Bingjian Yang, Xiao-Zhen Liao, Jing Xu, Dezhi Yang, Yu-Shi He, Zi-Feng Ma. Electrochemical properties of P2-Na2/3[Ni1/3Mn2/3]O2cathode material for sodium ion batteries when cycled in different voltage ranges,Electrochimica Acta., 2013, 113:200-204
[2]Dezhi Yang, Xiao-Zhen Liao, Bowen Huang, Jiani Shen, Yu-Shi He, Zi-Feng Ma. Na4Fe(CN)6/NaCl solid solution cathode material with enhanced electrochemical performances for sodium ion batteries,J. Mater. Chem. A, 2013, 1(43):13417-13421
[3]Dezhi Yang, Jing Xu, Xiao-Zhen Liao, Yu-Shi He, Haimei Liu,Zi-Feng Ma, Structure optimization of prussian blue analogue cathode materials for advanced sodium ion batteries,Chemical Communications, 2014, 50(87):13377-13380
[4]Dezhi Yang, Xiao-Zhen Liao, JifuShen, Yu-Shi He, Zi-Feng Ma, A flexible and binder-free reduced graphene oxide/Na2/3[Ni1/3Mn2/3]O2composite electrode for high-performance sodium ion batteries,Journal of Materials Chemistry A, 2014,2:6723-6726.
[5]Hong Wang, Xiao-Zhen Liao, Yang Yang, Xiaomin Yan, Yu-Shi He, and Zi-Feng Ma, Large-scale synthesis of NaNi1/3Fe1/3Mn1/3O2as high performance cathode materials for sodium ion batteries,Journal of The Electrochemical Society, 2016, 163 (3) A565-A570.
[6]Yingying Xie, Hong Wang, Guiliang Xu, et al., In operando XRD and TXM study on the metastable structure change of NaNi1/3Fe1/3Mn1/3O2 under electrochemical sodium ion intercalation,Advanced Energy Materials, 2016,6(24):1601306.
[7]Haiying Che, Suli Chen, Yingying Xie, et al,Electrolyte design strategies and research progress for room-temperature sodium-ion batteries,Energy & Environment Science, 2017, 10, 1075 – 1101.
[8]Haiying Che, Jing Liu, Hong Wang, et al, Rubidium and cesium ions as the electrolyte additive for improving performance of hard carbon anode in sodium-ion battery,Electrochemistry Communications, 83(2017)20-23.
[9]Yingying Xie, Gui-Liang Xu, Haiying Che, and Zi-Feng Ma*et al., Probing Thermal and Chemical Stability of NaxNi1/3Fe1/3Mn1/3O2Cathode Material towards Long-Life and Safe Sodium-Ion Batteries,Chemistry of Materials, 2018,30(15):4909–4918
[10]Liqi Sun#, Yingying Xie#, Xiao-Zhen Liao*, et al,Insight into Ca-substitution effects on O3-type NaNi1/3Fe1/3Mn1/3O2cathode materials for sodium ion batteries application,Small,2018,14(21) 1701523.
[11]Suli Chen, Fan Feng, Yimei Yin, Haiying Che, Xiao-Zhen Liao*, Zi-Feng Ma*, A solid polymer electrolyte based on star-like hyperbranchedb-cyclodextrin for all-solid-state sodium batteries,Journal of Power Sources, 399(2018)363-371.
[12]Haiying Che, Xinrong Yang, Hong Wang, Xiao-Zhen Liao,* S.S Zhang, Chun Sheng Wang, Zi-Feng Ma,* Long cycle life of sodium-ion pouch cell achieved by using multiple electrolyte additives,Journal of Power Sources, 407(2018)173-179.
[13]Wan Tang, Yingying Xie, Fangwei Peng, et al, Electrochemical Performance of NaFeFe(CN)6 Prepared by Solid Reaction for Sodium Ion Batteries,Journal of Electrochemical Society,2018,165(16) A3910-A3917.
[14]Suli Chen, Fan Feng, Yimei Yin, et al, Plastic crystal polymer electrolytes containing boron based anion acceptors for room temperature all-solid-state sodium-ion batteries,Energy Storage Materials,22 (2019) 57-65.
[15]Suli Chen, Haiying Che, Fan Feng, et al, Poly (vinylene carbonate)-Based Composite Polymer Electrolyte with Enhanced Interfacial Stability to Realize High Performance Room-Temperature Solid-State Sodium Batteries,ACS Applied Materials & Interfaces, 2019, 11, 43056−43065.
[16]Fan Feng, Suli Chen, Xiao-Zhen Liao, and Zi-Feng Ma*, Hierarchical Hollow Prussian Blue Rods Synthesized via Self-sacrifice Template as Cathode for High Performance Sodium Ion Battery,Small Methods,2019, 3, 1800259.
[17]Yan Yu, Haiying Che*, Xinrong Yang, et al,Non-flammable Organic Electrolyte for Sodium-ion Batteries,Electrochem Commun,110 (2020) 106635.
[18]Yingying Xie, Han Gao, Ross Harder, et al, Revealing the Structural Evolution and Phase Transformation of O3-type NaNi1/3Fe1/3Mn1/3O2Cathode Material on Sintering and Cycling Processes,ACS Advanced Energy Materials,3(2020)6107-6114.
[19]Feng, Fan; Chen, Suli; Zhao Shiqiang, et al,Enhanced Electrochemical Performance of MnFe@NiFe Prussian Blue Analogue Benefited from the Inhibition of Mn Ions Dissolution for Sodium-Ion Batteries,Chemical Engineering Journal,411 (2021) 128518.
[20]Suli Chen, Fan Feng, Haiying Che, Yimei Yin, Zi-Feng Ma*, High performance solid-state sodium batteries enabled by boron contained 3D composite polymer electrolyte,Chemical Engineering Journal,406(2021)126736.
[21]Siqi Yuan, Jizhen Qi, Meidan Jiang, et al, Improved Cycling Performance of P2-Na0.67Ni0.33Mn0.67O2Based on Sn Substitution Combined with Polypyrrole Coating,ACS Appl. Mater. Interfaces2021, 13, 3793−3804.
[22]Haiying Che, Xinrong Yang, Yan Yu, Chaoliang Pan, Hong Wang, Yonghong Deng, Linsen Li, Zi-Feng, Ma*, Engineering optimization approach of nonaqueous electrolyte for sodium ion battery with long cycle life and safety,Green Energy & Environment,2021, 6(2):212-219.
[23]Yang Sun, Hong Wang,* Dechao Meng, et al,Degradation Mechanism of O3-Type NaNi1/3Fe1/3Mn1/3O2 Cathode Materials During Ambient Storage and Their In Situ Regeneration,ACS Applied Energy Materials, 2021,4(3):2061-2067.
[24]Guijia Cui, Qingyu Dong, Zhuangzhou Wang, et al. Achieving highly reversible and fast sodium storage of Na4VMn(PO4)3/C-rGO composite with low-fraction rGO via spray-drying technique,Nano Energy89 (2021) 106462.
[25]CHE Haiying, ZHANG Ziyu, YU Xinhai, et al. A novel integrated energy systems combining methanol reformed fuel cell with sodium ion battery,Green Chemical Engineering, 2(2021)251-252.
[26]Yi-Feng Feng, Jia-Ni Shen, Zi-Feng Ma, Yi-Jun He, Equivalent circuit modeling of sodium-ion batteries, Journal of Energy Storage, 43 (2021) 103233.
[27]Wanyu Zhao, Min Guo, Zhijun Zuo, Xiaoli Zhao, Huanglin Dou, Yijie Zhang, Shiying Li, Zichen Wu, Yayun Shi, Zifeng Ma, Xiaowei Yang, Engineering Sodium Metal Anode with Sodiophilic Bismuthide
Penetration for Dendrite-Free and High-Rate Sodium-Ion Battery, Engineering, 11(2022)87-94.
[28]车海英,喻妍,杨馨蓉,廖小珍,李林森,邓永红,马紫峰.基于多氟代醚和碳酸酯共溶剂的钠离子电池电解液特性.储能科学与技术,2020,9(2):392-399.
[29]冯一峰,沈佳妮,车海英,马紫峰,贺益君,谈文,杨庆亨.钠离子电池健康状态预测.储能科学与技术,2021,10(4):1407-1415.
[30] 马紫峰,贺益君,陈建峰,新能源化工技术,化工进展,2021,40(9):4687-4695