Xindan Zhang

Miss Xindan Zhang

Higher Degree by Research Candidate

School of Chemical Engineering

College of Engineering and Information Technology


Year Citation
2026 Xiong, P., Liu, B., Zhang, S., Li, G., Zhang, X., Wang, R., . . . Zhang, C. (2026). Tailoring Quinone-Based Organic Small Molecules as Universal Cathodes for High-Performance Zn/Al-Ion Batteries Operating From −50 to 50°C. Advanced Functional Materials, 36(41), 10 pages.
DOI Scopus4 WoS5
2026 Sun, L., Zhang, X., Feng, G., Zhao, G., Johannessen, B., Li, G., . . . Guo, Z. (2026). Engineering CO
<sub>2</sub>
Reduction Pathways via Alloy‐Support Interactions in Li‐CO
<sub>2</sub>
Batteries. Advanced Materials, 38(42), 12 pages.

DOI Scopus1 WoS1 Europe PMC1
2025 Xiong, P., Ma, Q., Zhang, S., Jiao, L., Li, G., Zhang, X., . . . Zhang, C. (2025). Interfacial triazine chemistry modulates zn deposition and suppresses shuttle effect for durable aqueous zinc bromine/iodine batteries over a wide-temperature-range. Energy Storage Materials, 81, 104549.
DOI Scopus11 WoS11
2024 Zhang, X., Zhu, G., Xiao, B., Geng, J., Yang, Y., Wang, D., . . . Zhu, Y. (2024). Iron-based resin heterogeneous photo-self-Fenton system for efficient photocatalytic degradation of antibiotic wastewater. Separation and Purification Technology, 330, 125338.
DOI
2024 Geng, J., Zhu, G., Yang, Y., Zhang, X., Wang, D., Wang, J., & Zhu, Y. (2024). Enhanced antibiotic mineralization and detoxification through photoregeneration of FeOCl surface active site. Chemical Engineering Journal, 482, 148812-1-148812-10.
DOI
2022 Zhang, X., Wang, J., Xiao, B., Pu, Y., Yang, Y., Geng, J., . . . Zhu, Y. (2022). Resin-based photo-self-Fenton system with intensive mineralization by the synergistic effect of holes and hydroxyl radicals. Applied Catalysis B: Environmental, 315, 121525.
DOI
2022 Pu, Y., Bao, F., Wang, D., Zhang, X., Guo, Z., Chen, X., . . . Zhang, Q. (2022). The asymmetrical-structure of supramolecular precursor to improve internal electric field for simultaneously enhancing contaminant degradation and H2O2 production performance. Journal of Environmental Chemical Engineering, 10(1), 107123.
DOI

Connect With Me

Other Links