Xiaoyu Zhang

25.7k total citations · 13 hit papers
571 papers, 21.6k citations indexed

About

Xiaoyu Zhang is a scholar working on Materials Chemistry, Electrical and Electronic Engineering and Renewable Energy, Sustainability and the Environment. According to data from OpenAlex, Xiaoyu Zhang has authored 571 papers receiving a total of 21.6k indexed citations (citations by other indexed papers that have themselves been cited), including 332 papers in Materials Chemistry, 286 papers in Electrical and Electronic Engineering and 106 papers in Renewable Energy, Sustainability and the Environment. Recurrent topics in Xiaoyu Zhang's work include Perovskite Materials and Applications (135 papers), Quantum Dots Synthesis And Properties (119 papers) and Advanced Photocatalysis Techniques (64 papers). Xiaoyu Zhang is often cited by papers focused on Perovskite Materials and Applications (135 papers), Quantum Dots Synthesis And Properties (119 papers) and Advanced Photocatalysis Techniques (64 papers). Xiaoyu Zhang collaborates with scholars based in China, United States and Hong Kong. Xiaoyu Zhang's co-authors include Andrey L. Rogach, Yù Zhang, William W. Yu, Weitao Zheng, Min Lu, Stephen V. Kershaw, Wei Zhang, Hua Wu, Chun Sun and Jianli Hua and has published in prestigious journals such as Nature, Proceedings of the National Academy of Sciences and Journal of the American Chemical Society.

In The Last Decade

Xiaoyu Zhang

540 papers receiving 21.2k citations

Hit Papers

Dye-sensitized solar cells for efficient power generation... 2013 2026 2017 2021 2017 2016 2016 2013 2019 250 500 750

Peers

Xiaoyu Zhang
Wei Deng China
Jing Wang China
Jun Li China
Jia Li China
Bin Chen China
Long Chen China
Yu Li China
Hui Pan China
Xiaoyu Zhang
Citations per year, relative to Xiaoyu Zhang Xiaoyu Zhang (= 1×) peers Qiao Zhang

Countries citing papers authored by Xiaoyu Zhang

Since Specialization
Citations

This map shows the geographic impact of Xiaoyu Zhang's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Xiaoyu Zhang with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Xiaoyu Zhang more than expected).

Fields of papers citing papers by Xiaoyu Zhang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Xiaoyu Zhang. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Xiaoyu Zhang. The network helps show where Xiaoyu Zhang may publish in the future.

Co-authorship network of co-authors of Xiaoyu Zhang

This figure shows the co-authorship network connecting the top 25 collaborators of Xiaoyu Zhang. A scholar is included among the top collaborators of Xiaoyu Zhang based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Xiaoyu Zhang. Xiaoyu Zhang is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Wang, Ruihan, Jian Bao, Xiaohan Zhang, et al.. (2025). Crystal structure, microwave dielectric property and THz time domain spectroscopy of Na5Lu(MoO4)4 ceramics for LTCC applications. Ceramics International. 51(10). 13253–13262. 3 indexed citations
2.
Zhang, Xiaoyu, et al.. (2025). Self-powered superhydrophobic/oleophobic FR-PVDF/PA6 nanofiber membrane for long-term efficient filtration and respiratory monitoring. Journal of Membrane Science. 719. 123734–123734. 2 indexed citations
3.
Xiao, Jin, Xiaoyu Zhang, Xiaozhong Zheng, et al.. (2025). Engineering intense Ru–TiO 2 interaction for robust hydrogen oxidation reaction. Journal of Materials Chemistry A. 13(26). 20404–20411.
4.
Zhou, Yanchun, Shuo Li, Jiaqi Zhang, et al.. (2025). Use of CsPbCl3 Quantum Dots as a Chlorine Source Enables Formation of Thick Quasi‐2D Perovskite Films for High‐Performance Blue Light Emitting Diodes. Advanced Materials. 37(38). e2506970–e2506970. 3 indexed citations
5.
Sun, Ruimeng, Han Wang, Yurou Wang, et al.. (2024). A multifunctional nanoplatform for dual-readout visual detection and real-time inactivation of Staphylococcus aureus with nanozymes and Au nanorods. Food Bioscience. 60. 104453–104453. 3 indexed citations
6.
Zhang, Xiaoyu, Yaxiong Yang, Xiaohua Zheng, et al.. (2024). CO2-derived nitrogen doped porous carbon as advanced anodes for lithium-ion capacitors. Journal of Alloys and Compounds. 983. 173937–173937. 9 indexed citations
7.
Sun, Jian, Keke Li, Xiaohui Li, et al.. (2024). Microtubule-structured, dolomite-derived CO2 sorbents synthesized by impregnated layer solution combustion for direct solar-driven calcium looping. Separation and Purification Technology. 354. 128980–128980. 8 indexed citations
8.
Xu, Xin, et al.. (2024). CaMnO3 perovskite-derived porous γ-MnO2 for highly efficient oxidation of NH3 and NO. Catalysis Today. 437. 114779–114779. 1 indexed citations
9.
Zhang, Jie, et al.. (2024). A new synergy to overcome the strength-ductility dilemma in Al-Si-Cu alloy by adding AlZrNiTi master alloy. Materials Science and Engineering A. 915. 147213–147213. 1 indexed citations
10.
Li, Jing‐Feng, Xiaoyu Zhang, Zeke Liu, et al.. (2024). Optimizing Energy Levels and Improving Film Compactness in PbS Quantum Dot Solar Cells by Silver Doping. Small. 20(29). e2311461–e2311461. 7 indexed citations
11.
Sun, Ruimeng, Xiaoyu Zhang, Ting Du, et al.. (2023). A dual-mode aptasensor based on freeze–thaw induced aggregation of gold nanoparticles and FRET for Staphylococcus aureus detection. Microchemical Journal. 195. 109384–109384. 7 indexed citations
12.
Ma, Jin, Cong Wang, Tieying Yin, et al.. (2023). Preparation and in Vitro Property Research of Cholic Acid Nanoparticles with Dual Functions of Hemostasis and Antibacterial. Iranian journal of pharmaceutical research. In Press(In Press). e135437–e135437. 1 indexed citations
13.
Qiao, Liang, Xiaolu Wu, Wenyuan Zhang, et al.. (2023). Facile preparation of ladder-like polyphenyl silsesquioxanes-sodium benzenesulfonate micro-nano compound with novel pyrolysis model and high flame retardancy for epoxy resin. Polymer Degradation and Stability. 220. 110639–110639. 2 indexed citations
14.
Gao, Long, Tuo Cheng, Xiaoyu Zhang, et al.. (2023). Lead-free double perovskite halide fluorescent oxygen sensor with high stability. Ceramics International. 49(18). 30266–30272. 9 indexed citations
16.
Yang, Yaxin, Yuhan Zhang, Cui Ni, et al.. (2023). Three-dimensional melamine sponge hollow carbon/Ni3ZnC0.7/carbon nanotubes with tunable high-performance microwave absorption performance. Synthetic Metals. 295. 117351–117351. 3 indexed citations
17.
Zhang, Xiaoyu, Xuan Wang, Ying Cao, et al.. (2023). Facile synthesis of ZnCo2O4@NiMoO4 with porous coated structures on carbon paper as stable and efficient Pt-free counter electrode materials for advanced dye-sensitized solar cells. Applied Surface Science. 616. 156461–156461. 22 indexed citations
18.
Zhang, Xiaoyu, et al.. (2023). Flame retardant polycarbonate with ultralow loading 1,3-benzenedisulfonate. Polymer Degradation and Stability. 214. 110389–110389. 25 indexed citations
19.
Sun, Chun, Xiaoyu Zhang, Yiwei Zhao, et al.. (2023). Corrosion-induced growth control of lead halide perovskite nanoparticles. Chemical Engineering Journal. 479. 147989–147989. 6 indexed citations
20.
Litvin, Aleksandr P., et al.. (2023). B‐Site Doping of Metal Halide Perovskite Nanoplatelets Influences Their Optical Properties. Advanced Optical Materials. 12(8). 16 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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