Publications

A complete list is also available on my Google Scholar profile.


2025

  1. Y. Sui, Xi Zhu, L. Li, Y. Wang, G. Li, S. Dong, Y. Wang, H. Lin, K. Li, Q. Huang. Robust titanium suboxide anodes doped by sintering enhance PFOS degradation in water. Chemosphere, 379, 144438 (2025).

  2. Xi Zhu, Z. Pan, Y. Wu, W. Lu. Nano-Interface Charge Transfer in Ga₂O₃@(Co, Ni)S₂ Heterojunction Ultraviolet Photodetectors. ACS Applied Nano Materials, 8(6), 2873–2885 (2025).

  3. Xi Zhu, Y. Zeng, X. Zhao, D. Liu, W. Lei, S. Lu. Biomass-Derived Carbon and Their Composites for Supercapacitor Applications: Sources, Functions, and Mechanisms. EcoEnergy, 3(3), e70000 (2025).

  4. Xi Zhu, Y. Wu, Z. Pan, W. Lu. Advancements in Ga₂O₃-based heterojunction ultraviolet photodetectors: Types, fabrication techniques, and integrated materials for enhancing photoelectric conversion efficiency. Journal of Alloys and Compounds, 1010, 177757 (2025).

2024

  1. Xi Zhu, Y. Wu, Z. Pan, W. Lu. Enhanced charge transfer across the dual interface of Ga₂O₃@TiO₂/Ti₃C₂ heterojunction for self-powered deep-ultraviolet photodetector. Materials Today Communications, 41, 111065 (2024).

  2. Z. Pan, Xi Zhu, Y. Liu, L. Yang, M. Jiao, S. Kang, J. Luo, X. Fu, W. Lu. Enhanced Light Absorption and Photo-Generated Charge Separation Efficiency for Boosting Photocatalytic H₂ Evolution through TiO₂ Quantum Dots with N-Doping and Concomitant Oxygen Vacancy. Small, 20(36), 2311861 (2024).

2023

  1. Xi Zhu, Z. Pan, W. Lu, et al. Composition-dependent activity of Mn-doping NiS₂ nanosheets for boosting photocatalytic H₂ evolution. Journal of Colloid and Interface Science, 629, 22–35 (2023).

  2. Xi Zhu, Z. Pan, W. Lu. Hierarchical nanohybrid of CuS/NiS₂/Ti₃C₂ heterostructure with boosting charge transfer for efficient photocatalytic hydrogen evolution. International Journal of Hydrogen Energy, 48(69), 26740–26756 (2023).

  3. Xi Zhu, Y. Wu, G. Li, W. Lu. In-situ composition development of Zn/In-doped Ga₂O₃ nanowire with ultrahigh responsivity and long-term stability for deep-UV photodetector. Journal of Alloys and Compounds, 953, 170109 (2023).

  4. Xi Zhu, Y. Wu, G. Li, K. Zhang, S. Feng, W. Lu. Ga₂O₃–MXene Nanowire Networks with Enhanced Responsivity for Deep-UV Photodetection. ACS Applied Nano Materials, 6(3), 2048–2062 (2023).

  5. G. Li, K. Zhang, Y. Wu, Xi Zhu, X. Fu, L. Wang, S. Feng, W. Lu. Self-powered solar-blind ultraviolet photodetectors with Ga₂O₃ nanowires as the interlayer. Vacuum, 215, 112277 (2023).

2022

  1. Xi Zhu, S. Liu. Tremella-like 2D Nickel–Copper Disulfide with Ultrahigh Capacity and Cyclic Retention for Hybrid Supercapacitors. ACS Applied Materials & Interfaces, 14(38), 43265–43276 (2022).

  2. Xi Zhu, S. Liu. Construction of hollow-sphere CuNi₂S₄ with optimized structure and boosting conductivity for hybrid supercapacitor. Journal of Energy Storage, 51, 104582 (2022).

  3. Xi Zhu. Recent advances of transition metal oxides and chalcogenides in pseudo-capacitors and hybrid capacitors: A review of structures, synthetic strategies, and mechanism studies. Journal of Energy Storage, 49, 104148 (2022). [https://www.sciencedirect.com/science/article/pii/S2352152X22001827]

  4. Xi Zhu, S. Liu. Al₂O₃-assisted synthesis of hollow CuCo₂S₄ nanospheres with rich sulfur vacancies for hybrid supercapacitor. Electrochimica Acta, 427, 140881 (2022).

2018

  1. Xi Zhu, J. Tian, X. Liu, et al. Performance of lithium-sulfur batteries using porous Raney nickel as sulfur immobilizer. Acta Materiae Composites Sinica (复合材料学报), 35(5), 1269–1278 (2018).

2017

  1. Xi Zhu, J. Tian, X. Liu, W. Huang, D. Luo, Z. Wang, Z. Shan. A novel compact cathode using sponge-like RANEY® nickel as the sulfur immobilizer for lithium–sulfur batteries. RSC Advances, 7(56), 35482–35489 (2017).

  2. Z. Lin, X. Li, W. Huang, Xi Zhu, Y. Wang, Z. Shan. Active platinum nanoparticles as a bifunctional promoter for lithium–sulfur batteries. ChemElectroChem, 4(10), 2577–2582 (2017).

  3. Z. Wang, Z. Shan, J. Tian, W. Huang, D. Luo, Xi Zhu, S. Meng. Immersion-plated Cu₆Sn₅/Sn composite film anode for lithium ion battery. Journal of Materials Science, 52(10), 6020–6033 (2017).