论文著作:
24. Yuqing Yang, Liping Qin, Qiong He, Chengjie Yin,* Yongpeng Lei, Shuquan Liang, Guozhao Fang.* Electrochemically and chemically in-situ interfacial protection layers towards stable and reversible Zn anodes, Science Bulletin 2025, 70(1): 104-124. (中科院一区 IF=18.8)
23. Zhixiong Li, Chengli Wu,* Lirui Mao, Chengjie Yin,* Residual-carbon-supported δ-MnO2 as cathodes for aqueous zinc ion batteries with high specific capacity, Journal of Energy Storage 2025, 105(C), 114760. (中科院二区 IF=9.4)
22. Rui Jia, Chengjie Yin,* Bin Wang, Lan Li, Jinsong Hu. Polyaniline-coated sodium vanadate nanorods cathode boosting zinc ion dynamics in aqueous zinc-ion batteries, Chemical Engineering Journal 2024, 500, 157587. (中科院一区 IF=13.3)
21. Chengjie Yin,* Lan Li, Rui Jia, Jinsong Hu. Engineering interlayer space and composite of square shaped V2O5 by PVP-assisted polyaniline intercalation and graphene for aqueous zinc ion batteries, Inorganic Chemistry 2024, 63(43), 20551−20561. (中科院一区 IF=4.3)。
20. Lan Li, Chengjie Yin,* Rong Han, Fujie Zhong, Hu Jinsong. CNT Composite β-MnO2 with fiber cable shape as cathode materials for aqueous zinc-ion batteries, Inorganic Chemistry 2024, 63(28), 13100−13109. (中科院一区 IF=4.3)
19. Chengjie Yin,* Li Lan, Hu Jinsong. Intercalating polypyrrole tuning interlayer space of V2O5 for advanced aqueous zinc ion batteries. Colloids and Surfaces A: Physicochemical and Engineering Aspects 2024, 692, 134013. (中科院二区 IF=5.2)
18. Rong Han, Yusong Pan*, Chao Du, Yanlei Xiang, Yuanqing Wang, Hongwu Zhu, Chengjie Yin*. Eu doping β-MnO2 as cathode materials for high specific capacity aqueous zinc ion batteries. Journal of Energy Storage 2024, 80, 110250. (中科院二区 IF=9.4)
17. Chengjie Yin,* Hui Wang, Chengling Pan, Yusong Pan, Zhi Li, Jinsong Hu. Constructing MOF-derived V2O5 as advanced cathodes for aqueous zinc ion batteries. Journal of Energy Storage 2023, 73B, 109045. (中科院二区 IF=9.4)
16. Chengjie Yin,* Chengling Pan, Yusong Pan, Jinsong Hu,* and Guozhao Fang*. Proton self-doped polyaniline with high electrochemical activity for aqueous zinc-ion batteries. Small Methods 2023, 7, 2300574. (中科院二区 IF=12.4)
15. Rong Han, Yusong Pan*, Chenjie Yin*, Chao Du, Yanlei Xiang, Yuanqing Wang, Hongwu Zhu. Proton-self-doped PANI@CC as the cathode for high-performance aqueous zinc-ion battery. Journal of Colloid and Interface Science 2023, 650, 322–329. (中科院一区 IF=9.9)
14. Chengjie Yin*, Chengling Pan, Yusong Pan, Jinsong Hu. Hollow Mn-Co-O@C yolk-shell microspheres with carbon shells as cathodes derived from a double-metal MOF for aqueous zinc-ion batteries. ACS Sustainable Chemistry & Engineering 2023, 33, 12397-12405. (中科院一区 IF=8.4)
13. Chengjie Yin*, Chengling Pan, Yusong Pan, Jinsong Hu. Hierarchical spheroidal MOF-derived MnO@C as cathode components for high-performance aqueous zinc ion batteries. Journal of Colloid and Interface Science 2023, 642, 513–522. (中科院一区 IF=9.9).
12. Chengjie Yin*, Jianhui Chen, Chengling Pan*, Yusong Pan*, Jinsong Hu*. MOF-derived Mn3O4@C hierarchical nanospheres as cathodes for aqueous zinc-ion batteries. ACS Applied Energy Materials 2022, 5, 14144−14154. (中科院二区IF=6.9)
11. Xiaobo Liao, Chengling Pan*, Haixian Yan, Yuan Zhu, Yusong Pan*, Chengjie Yin*. Polyaniline-functionalized graphene composite cathode with enhanced Zn2+ storage performance for aqueous zinc-ion battery. Chemical Engineering Journal 2022, 440, 135930. (中科院一区 IF=13.3)
10. Chengjie Yin*, Chengling Pan*, Xiaobo Liao, Yusong Pan*, Liang Yuan. Regulation interlayer spacing vanadium oxide by in situ polyaniline intercalation for superior insertion/extraction cathodes in aqueous zinc-ion batteries. ACS Applied Materials & Interfaces 2021, 13, 35837–35847.(中科院一区 IF= 10.383)
9. Chengjie Yin*, Chengling Pan*, Xiaobo Liao, Yusong Pan*, Liang Yuan*. Coordinately unsaturated manganese-based metal organic frameworks as a high-performance cathode for aqueous zinc-ion batteries. ACS Applied Materials & Interfaces 2021, 13, 39347–39354.(中科院一区 IF= 10.383)
8. Xiaobo Liao, Chengling Pan*, Yusong Pan*, Chengjie Yin*. Synthesis of three-dimensional β-MnO2/PPy composite for high-performance cathode in zinc-ion batteries. Journal of Alloys and Compounds 2021, 888,161619.(中科院二区,IF= 6.2)
7. Chengjie Yin*, Linfeng Xu, Yusong Pan*, Chengling Pan*, Metal−organic framework as anode Materials for lithium-ion batteries with high capacity and rate performance. ACS Applied Energy Materials 2020, 3, 10776−10786.(中科院二区,IF= 6.7)
6. Chengjie Yin, Zhiqiang Bao, Hui Tan, Hongming Zhou*, Jian Li*, Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: tuning the Mn3+ content and electrochemical performance by organic ligands, Chemical Engineering Journal 2019, 372, 408-419. (中科院一区 IF=13.3)
5.Chengjie Yin, Hongming Zhou*, Jian Li*, Influence of doped anions on PEDOT/Ni-Mn-Co-O for supercapacitor electrode material. Applied Surface Science 2019, 464, 220−228.(中科院一区 IF=6.5)
4. Chengjie Yin, Hongming Zhou*, Jian Li*, Facile one-step hydrothermal synthesis of PEDOT:PSS/MnO2 nanorod hybrids for high-rate supercapacitor electrode materials. Ionics 2019, 2, 685–695. (中科院三区 IF=2.7)
3. Hongming Zhou, Bin Liu, Demin Xiao, Chengjie Yin*, Jian Li, Fluoroethylene carbonate as the additive of lithium difluoro(oxalate) borate–sulfolane electrolytes to improve the electrochemical performance of LiNi0.5Mn1.5O4 cathode. Journal of Materials Science: Materials in Electronics 2019, 30, 5098–5108. (中科院三区 IF=2.4)
2. Chengjie Yin, Hongming Zhou*, Zhaohui Yang, Jian Li*, Synthesis and electrochemical properties of LiNi0.5Mn1.5O4 for Li-ion batteries by the metal−organic framework method. ACS Applied Materials & Interfaces 2018, 10, 13625−13634.(中科院一区 IF= 10.383)
1. Chengjie Yin, Chunming Yang*, A novel and facile one-pot solvothermal synthesis of PEDOT−PSS/Ni−Mn−Co−O hybrid as an advanced supercapacitor electrode material. ACS Applied Materials & Interfaces 2016, 8, 2741−2752. (中科院一区 IF= 10.383)