Journal of Inorganic Materials
Previous Articles Next Articles
QIAO Junyi, LI Tao, DONG Xinji, YANG Hange, LIN Tianquan
Received:2025-10-27
Revised:2015-11-28
Contact:
LIN Tianquan, investigator. E-mail: tqlin@sjtu.edu.cn
About author:QIAO Junyi (2002–), male, Master candidate. E-mail: jyqiao0907@sjtu.edu.cn
Supported by:CLC Number:
QIAO Junyi, LI Tao, DONG Xinji, YANG Hange, LIN Tianquan. Regulation of Copper Current Collector's Crystal Planes Enables Uniform Zinc Deposition for Long-Cycling Aqueous Zinc-Iodine Batteries[J]. Journal of Inorganic Materials, DOI: 10.15541/jim20250423.
| [1] LI T, YANG H, DONG X, et al.Co-regulation of interface and bulk for enhanced localized high-concentration electrolytes in stable and practical zinc metal batteries. Angewandte Chemie International Edition, 2025, 64(29): e202501183. [2] GUO S J, YAN M Y, XU D M, et al.Anti-freezing hydrogel electrolyte with a regulated hydrogen bond network enables high-rate and long cycling zinc batteries. Energy & Environmental Science, 2025, 18(1): 418. [3] JIA X, LIU C, NEALE Z G, et al.Active materials for aqueous zinc ion batteries: synthesis, crystal structure, morphology, and electrochemistry. Chemical Reviews, 2020, 120(15): 7795. [4] SONG J, XU K, LIU N, et al.Crossroads in the renaissance of rechargeable aqueous zinc batteries. Materials Today, 2021, 45: 191. [5] ZHANG T, LI T, SHEN Y, et al.Enhanced kinetics and stability of Zn-MnO2 batteries with a multifunctional TiO2 coating. Advanced Materials, 2025, 37(34): 2505082. [6] ZHANG F, LIAO T, LIU C, et al.Biomineralization-inspired dendrite-free Zn-electrode for long-term stable aqueous Zn-ion battery. Nano Energy, 2022, 103: 107830. [7] LI T, DONG X, YANG H, et al.Defective 1T-VS2 with fibonacci pattern unlocking high mass-loading and self-charging cathodes for aqueous zinc-ion batteries. Energy & Environmental Science, 2025, 18(7): 3169. [8] CHENG Y, ZHANG N, WANG Q, et al.A long-life hybrid zinc flow battery achieved by dual redox couples at cathode. Nano Energy, 2019, 63: 103822. [9] ZHOU L F, DU T, LI J Y, et al.A strategy for anode modification for future zinc-based battery application. Materials Horizons, 2022, 9(11): 2722. [10] BAI Y, ZHANG H, LIANG W, et al.Advances of Zn metal-free “rocking-chair”-type zinc ion batteries: recent developments and future perspectives. Small, 2024, 20(8): 2306111. [11] WANG F, BORODIN O, GAO T, et al.Highly reversible zinc metal anode for aqueous batteries. Nature Materials, 2018, 17(6): 543. [12] HE P, QUAN Y, XU X, et al.High-performance aqueous zinc-ion battery based on layered H2V3O8 nanowire cathode. Small, 2017, 13(47): 1702551. [13] LI X, CHEN Z, RUAN P, et al.Inducing preferential growth of the Zn (002) plane by using a multifunctional chelator for achieving highly reversible Zn anodes. Nanoscale, 2024, 16(6): 2923. [14] XIA T, LIANG T, XIAO Z, et al.Nanograined copper foil as a high-performance collector for lithium-ion batteries. Journal of Alloys and Compounds, 2020, 831: 154801. [15] LI H, LI L, LIU W, et al.Recent advances in current collectors for aqueous zinc-ion batteries. Chemical Record, 2025, 25(3): e202400217. [16] ÇAMURCU T, DEMIRBAŞ E, ATEŞ M N.Achieving long cycle life of Zn-ion batteries through three-dimensional copper foam. ACS Applied Materials & Interfaces, 2024, 16(18): 23209. [17] WANG X, TIAN Y, YANG K, et al.Sandwich-structured anode enables high stability and enhanced zinc utilization for aqueous Zn-ion batteries. Energy Storage Materials, 2024, 64: 103078. [18] YANG T, CHEN X, LI W, et al.First-principles calculations to investigate the interfacial energy and electronic properties of Mg/AlN interface. Journal of Physics and Chemistry of Solids, 2022, 167: 110705. [19] KIDD T E, LUKASHEV P V, STUELKE L, et al.Diffusion energy barrier of Au on Bi2Se3: theory and experiment. Physica Scripta, 2021, 96(12): 125708. [20] XIAO X, GREENBURG L C, LI Y, et al.Epitaxial electrodeposition of zinc on different single crystal copper substrates for high performance aqueous batteries. Nano Letters, 2025, 25(4): 1305. [21] LI M, WU J, LI H, et al.Suppressing the shuttle effect of aqueous zinc-iodine batteries: progress and prospects. Materials, 2024, 17(7): 1646. [22] XU J, HUANG Z, ZHOU H, et al.Holistic optimization strategies for advanced aqueous zinc iodine batteries. Energy Storage Materials, 2024, 72: 103596. [23] CHEN H, LI X, FANG K, et al.Aqueous zinc-iodine batteries: from electrochemistry to energy storage mechanism. Advanced Energy Materials, 2023, 13(41): 2302187. [24] WANG D, ZHAO Y, LIANG G, et al.A zinc battery with ultra-flat discharge plateau through phase transition mechanism. Nano Energy, 2020, 71: 104583. [25] SUN Y, LIAN Z, REN Z, et al.Proton-dominated reversible aqueous zinc batteries with an ultraflat long discharge plateau. ACS Nano, 2021, 15(9): 14766. |
| [1] | PENG Dezhao, LI Rui, WANG Wenhong, WANG Zirui, ZHANG Zhizhen. Research Progress on Sodium Chloride Solid Electrolytes [J]. Journal of Inorganic Materials, 2026, 41(4): 409-420. |
| [2] | YANG Hengqiang, ZHANG Xinyue, MA Yichu, ZHOU Qingjun. Iron-based Perovskite Material La0.25M0.75FeO3-δ (M=Ca, Sr, Ba): Preparation and Performance as Cathode for Solid Oxide Fuel Cells [J]. Journal of Inorganic Materials, 2025, 40(12): 1365-1372. |
| [3] | QU Jifa, WANG Xu, ZHANG Weixuan, ZHANG Kangzhe, XIONG Yongheng, TAN Wenyi. Enhanced Sulfur-resistance for Solid Oxide Fuel Cells Anode via Doping Modification of NaYTiO4 [J]. Journal of Inorganic Materials, 2025, 40(5): 489-496. |
| [4] | XUE Ke, CAI Changkun, XIE Manyi, LI Shuting, AN Shengli. Pr1+xBa1-xFe2O5+δ Cathode Materials for Solid Oxide Fuel Cells: Preparation and Electrochemical Performance [J]. Journal of Inorganic Materials, 2025, 40(4): 363-371. |
| [5] | XIN Zhenyu, GUO Ruihua, WUREN Tuoya, WANG Yan, AN Shengli, ZHANG Guofang, GUAN Lili. Pt-Fe/GO Nanocatalysts: Preparation and Electrocatalytic Performance on Ethanol Oxidation [J]. Journal of Inorganic Materials, 2025, 40(4): 379-387. |
| [6] | YANG Shuqi, YANG Cunguo, NIU Huizhu, SHI Weiyi, SHU Kewei. GeP3/Ketjen Black Composite: Preparation via Ball Milling and Performance as Anode Material for Sodium-ion Batteries [J]. Journal of Inorganic Materials, 2025, 40(3): 329-336. |
| [7] | LIU Lei, GUO Ruihua, WANG Li, WANG Yan, ZHANG Guofang, GUAN Lili. Oxygen Reduction Reaction on Pt3Co High-index Facets by Density Functional Theory [J]. Journal of Inorganic Materials, 2025, 40(1): 39-46. |
| [8] | PAN Jianlong, MA Guanjun, SONG Lemei, HUAN Yu, WEI Tao. High Stability/Catalytic Activity Co-based Perovskite as SOFC Anode: In-situ Preparation by Fuel Reducing Method [J]. Journal of Inorganic Materials, 2024, 39(8): 911-919. |
| [9] | CHEN Ze, ZHI Chunyi. MXene Based Zinc Ion Batteries: Recent Development and Prospects [J]. Journal of Inorganic Materials, 2024, 39(2): 204-214. |
| [10] | YANG Daihui, SUN Tian, TIAN Hexin, SHI Xiaofei, MA Dongwei. Iron-nitrogen-codoped Mesoporous Carbon: Facile Synthesis and Catalytic Performance of Oxygen Reduction Reaction [J]. Journal of Inorganic Materials, 2023, 38(11): 1309-1315. |
| [11] | TAN Shuyu, LIU Xiaoning, BI Zhijie, WAN Yong, GUO Xiangxin. Jointing of Cathode Coating and Interface Modification for Stabilizing Poly(ethylene oxide) Electrolytes Against High-voltage Cathodes [J]. Journal of Inorganic Materials, 2023, 38(12): 1466-1474. |
| [12] | GUO Yuxiang, HUANG Liqiang, WANG Gang, WANG Hongzhi. Dual-lithium-salt Gel Complex Electrolyte: Preparation and Application in Lithium-metal Battery [J]. Journal of Inorganic Materials, 2023, 38(7): 785-792. |
| [13] | YAO Yishuai, GUO Ruihua, AN Shengli, ZHANG Jieyu, CHOU Kuochih, ZHANG Guofang, HUANG Yarong, PAN Gaofei. In-situ Loaded Pt-Co High Index Facets Catalysts: Preparation and Electrocatalytic Performance [J]. Journal of Inorganic Materials, 2023, 38(1): 71-78. |
| [14] | FAN Shuai, JIN Tian, ZHANG Shanlin, LUO Xiaotao, LI Chengxin, LI Changjiu. Effect of Li2O Sintering Aid on Sintering Characteristics and Electrical Conductivity of LSGM Electrolyte for Solid Oxide Fuel Cell [J]. Journal of Inorganic Materials, 2022, 37(10): 1087-1092. |
| [15] | CHEN Saisai, PANG Yali, WANG Jiaona, GONG Yan, WANG Rui, LUAN Xiaowan, LI Xin. Preparation and Properties of Green-yellow Reversible Electro-thermochromic Fabric [J]. Journal of Inorganic Materials, 2022, 37(9): 954-960. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||