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[1]T. Qiu, L. Yang, Y. Xiang, Y. Ye, G. Zou, H. Hou*, X. Ji.Heterogeneous Interface Design for Enhanced Sodium Storage: Sb Quantum Dots Confined by Functional Carbon[J].Small Methods, 2021, 5: 2100188.
[2]Z. Zhang, J. Hu*, S. Liu, X. Hao, L. Li, G. Zou, H. Hou*, X. Ji.Channel regulation of TFC membrane with hydrophobic carbon dots in forward osmosis[J].Chinese Chemical Letters, 2021
[3]L. Li, Y. Li, Y. Ye, R. Guo, G. Zou, H. Hou*, X. Ji.Kilogram-Scale Synthesis and Functionalization of Carbon Dots for Superior Electrochemical Potassium Storage.ACS Nano, 2021, 15 (4) : 6872–6885.
[4]R Guo, L Li, B Wang, Y Xiang, G Zou, Y Zhu, H Hou*, X Ji.Functionalized Carbon Dots for Advanced Batteries[J].Energy Storage Materials, 2021, 37: 8-39.
[5]A. Wang, W. Hong, L. Yang, Y. Tian, X. Qiu, G. Zou, H. Hou*, X. Ji.Bi-based electrode materials for alkali metal-ion batteries.Small, 2020, 16 (48) : 2004022.
[6]S. Li, Z. Luo, L. Li, J. Hu, G. Zou, H. Hou*, X. Ji.Recent Progress on Electrolyte Additives for Stable Lithium Metal Anode[J].Energy Storage Materials, 2020, 32: 306-319.
[7]W Hong, A Wang, L Li, T Qiu, J Li, Y Jiang, G Zou, H Peng*, H Hou*, X Ji.Bi Dots Confined by Functional Carbon as High Performance Anode for Lithium Ion Batteries[J].Advanced Functional Materials, 2020, 30: 2000756.
[8]T Qiu, W Hong, L Li, Y Zhang, P Cai, C Liu, J Li, G Zou, H Hou*, X Ji.Hollow carbon microbox as anode material for sodium-ion batteries[J].Journal of Energy Chemistry, 2020, 51: 293-302.
[9]L Yang, W Hong, Y Tian, G Zou, H Hou*, W Sun*, X Ji.Heteroatom-doped carbon inlaid with Sb2X3 (X= S, Se) nanodots for high-performance potassium-ion batteries[J].Chemical Engineering Journal, 2020, 385: 123838.
[10]D Liu, L Yang, Z Chen, G Zou, H Hou*, J Hu*, X Ji.Ultra-stable Sb confined into N-doped carbon fibers anodes for high-performance potassium-ion batteries[J].Science Bulletin, 2020, 68 (12) : 1003-1012.
[11]Y Zhu, J Li, X Yun, G Zhao, P Ge, G Zou, Y Liu, H Hou*, X Ji.Graphitic Carbon Quantum Dots Modified Nickel Cobalt Sulfide as Cathode Materials for Alkaline Aqueous Batteries[J].Nano-Micro Letters, 2020, 12: 16.
[12]W Hong, Y Zhang, L Yang, Y Tian, P Ge, J Hu, W Wei, G Zou, H Hou*, X Ji.Carbon quantum dot micelles tailored hollow carbon anode for fast potassium and sodium storage[J].Nano Energy, 2019, 65: 104038.
[13]G Zou, H Hou*, J Hu, X Ji.General Synthesis of Desired Heteroatoms‐doped Hierarchical Carbon toward Excellent Electrochemical Energy Storage[J].Batteries & Supercaps, 2019, 2 (8) : 1900030.
[14]L Li, X Jia, Y Zhang, T Qiu, W Hong, Y Jiang, G Zou, H Hou*, X Chen*, X Ji.Li4Ti5O12 Quantum Dots Decorated Carbon Frameworks from Carbon Dots for Fast Lithium Ions Storage[J].Materials Chemistry Frontiers, 2019, 3: 1761-1767.
[15]M. Deng, S. Li, W. Hong, Y. Jiang, W. Xu, H. Shuai, H. Li, W. Wang*, H. Hou*, X. Ji*..Natural stibnite ore (Sb2S3) embedded in sulfur-doped carbon sheets: enhanced electrochemical properties as anode for sodium ions storage[J].RSC Advances, 2019, 9 (27) : 15210-15216.
[16]Y Zhang, L Yang, Y Tian, L Li, J Li, T Qiu, G Zou, H Hou*, X Ji.Honeycomb hard carbon derived from carbon quantum dots as anode material for K-ion batteries.Materials Chemistry and Physics, 2019 (229) : 303-309.
[17]W Hong, P Ge, Y Jiang, L Yang, Y Tian, G Zou, X Cao, H Hou*, X Ji.Yolk–Shell-Structured Bismuth@ N-Doped Carbon Anode for Lithium-Ion Battery with High Volumetric Capacity[J].ACS Applied Materials & Interfaces, 2019, 11 (11) : 10829-10840.
[18]M Deng, S Li, W Hong, Y Jiang, W Xu, H Shuai, G Zou, Y Hu, H Hou*, W Wang*, X Ji.Octahedral Sb2O3 as high-performance anode for lithium and sodium storage[J].Materials Chemistry and Physics, 2019, 223: 46-52.
[19]P Ge, S Li, H Shuai, W Xu, Y Tian, L Yang, G Zou, H Hou*, X Ji.Engineering 1D chain-like architecture with conducting polymer towards ultra-fast and high-capacity energy storage by reinforced pseudo-capacitance[J].Nano Energy, 2018, 54: 26-38.
[20]Y. Jiang, G. Zou, W. Hong, Y. Zhang, Y. Zhang, H. Shuai, W. Xu, H. Hou*, X. Ji.N-Rich carbon-coated Co3S4 ultrafine nanocrystals derived from ZIF-67 as an advanced anode for sodium-ion batteries[J].Nanoscale, 2018, 10 (39) : 18786-18794.
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