Xiong‐Fei Zhang

8.7k total citations · 3 hit papers
184 papers, 7.3k citations indexed

About

Xiong‐Fei Zhang is a scholar working on Materials Chemistry, Mechanical Engineering and Biomedical Engineering. According to data from OpenAlex, Xiong‐Fei Zhang has authored 184 papers receiving a total of 7.3k indexed citations (citations by other indexed papers that have themselves been cited), including 50 papers in Materials Chemistry, 44 papers in Mechanical Engineering and 36 papers in Biomedical Engineering. Recurrent topics in Xiong‐Fei Zhang's work include Membrane Separation and Gas Transport (23 papers), Advanced Cellulose Research Studies (22 papers) and Advanced Sensor and Energy Harvesting Materials (17 papers). Xiong‐Fei Zhang is often cited by papers focused on Membrane Separation and Gas Transport (23 papers), Advanced Cellulose Research Studies (22 papers) and Advanced Sensor and Energy Harvesting Materials (17 papers). Xiong‐Fei Zhang collaborates with scholars based in China, United States and Australia. Xiong‐Fei Zhang's co-authors include Jianfeng Yao, Yijun Feng, Zhongguo Wang, Jianhao Qiu, Mingmin Jia, Lian Song, Xingguang Zhang, Lian Shu, Yaquan Wang and Huanting Wang and has published in prestigious journals such as Angewandte Chemie International Edition, Biomaterials and The Science of The Total Environment.

In The Last Decade

Xiong‐Fei Zhang

178 papers receiving 7.3k citations

Hit Papers

Inorganic Salts Induce Thermally Reversible and Anti‐Free... 2017 2026 2020 2023 2019 2017 2018 100 200 300 400

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Xiong‐Fei Zhang China 46 2.2k 1.7k 1.6k 1.4k 1.3k 184 7.3k
Zichen Wang China 53 3.2k 1.4× 902 0.5× 2.3k 1.4× 529 0.4× 964 0.8× 236 8.7k
Ludovic F. Dumée Australia 56 2.9k 1.3× 1.8k 1.1× 3.9k 2.5× 970 0.7× 1.7k 1.3× 246 10.1k
Dezhi Chen China 43 2.2k 1.0× 1.3k 0.8× 1.1k 0.7× 771 0.5× 560 0.4× 183 6.5k
Jongbeom Na Australia 52 3.7k 1.6× 2.4k 1.4× 2.0k 1.3× 1.5k 1.0× 566 0.4× 142 8.9k
Jia Liu China 54 5.7k 2.5× 3.0k 1.7× 2.5k 1.6× 2.0k 1.4× 1.5k 1.1× 301 10.9k
Nan Li China 48 3.6k 1.6× 2.2k 1.3× 1.2k 0.8× 597 0.4× 564 0.4× 261 7.9k
Takeo Yamaguchi Japan 52 2.2k 1.0× 2.1k 1.2× 2.4k 1.5× 953 0.7× 1.9k 1.5× 334 9.9k
Fang Liu China 41 2.5k 1.1× 1.2k 0.7× 1.3k 0.8× 543 0.4× 647 0.5× 186 7.7k
Liying Liu China 38 1.5k 0.7× 1.2k 0.7× 1.6k 1.0× 663 0.5× 802 0.6× 192 5.2k
Mira Park South Korea 54 3.5k 1.5× 2.0k 1.1× 1.2k 0.7× 909 0.6× 561 0.4× 171 7.5k

Countries citing papers authored by Xiong‐Fei Zhang

Since Specialization
Citations

This map shows the geographic impact of Xiong‐Fei 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 Xiong‐Fei Zhang with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Xiong‐Fei Zhang more than expected).

Fields of papers citing papers by Xiong‐Fei Zhang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Xiong‐Fei 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 Xiong‐Fei Zhang. The network helps show where Xiong‐Fei Zhang may publish in the future.

Co-authorship network of co-authors of Xiong‐Fei Zhang

This figure shows the co-authorship network connecting the top 25 collaborators of Xiong‐Fei Zhang. A scholar is included among the top collaborators of Xiong‐Fei 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 Xiong‐Fei Zhang. Xiong‐Fei 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
2.
Zhang, Dandan, Xiong‐Fei Zhang, Jiali Ma, Mengjie Li, & Jianfeng Yao. (2025). Integration of ZnY zeolite into nanocellulose matrix for efficient CO2/N2 separation. Separation and Purification Technology. 370. 133235–133235. 2 indexed citations
3.
Ma, Jiali, et al.. (2025). Fabrication of all biomass-based carbonized aerogels for efficient oil separation. Separation and Purification Technology. 377. 134353–134353.
4.
Xu, Chuan, et al.. (2025). Viscosity-mediated entrapment of ChCl/ZnCl2 deep eutectic solvent in supported liquid membranes enables efficient CO2 separation. Journal of Membrane Science. 733. 124331–124331. 2 indexed citations
5.
Wang, Zhongguo, Xiong‐Fei Zhang, Xiangjin Kong, & Jianfeng Yao. (2024). Top-down fabrication of wood hydrogels: From preparation to application. Chemical Engineering Journal. 490. 151518–151518. 18 indexed citations
6.
Wang, Zhongguo, et al.. (2024). Amino functionalized zeolitic imidazolate framework-8 coated cellulose aerogel for enhanced air purification. Separation and Purification Technology. 355. 129741–129741. 8 indexed citations
7.
Li, Mengjie, Xiong‐Fei Zhang, Jianhao Qiu, & Jianfeng Yao. (2024). Flexible g-C3N4@bacterial cellulose aerogels for integrated indoor air purification. Colloids and Surfaces A Physicochemical and Engineering Aspects. 698. 134567–134567. 6 indexed citations
8.
Yang, Fan, Dandan Hao, Miaomiao Wu, Bo Fu, & Xiong‐Fei Zhang. (2024). Amino-Functionalized Metal–Organic Framework-Mediated Cellulose Aerogels for Efficient Cr(VI) Reduction. Polymers. 16(22). 3162–3162. 2 indexed citations
10.
Zhang, Xiong‐Fei, et al.. (2024). Impact of oil-extraction/port activities on distribution and exchange of PAHs/APAHs/NPAHs/OPAHs in water and sediment of the Yellow River Delta, China. Journal of Environmental Sciences. 155. 290–302. 2 indexed citations
11.
Yang, Yilin, et al.. (2023). Integrating two-dimensional MXene fillers into nanocellulose for the fabrication of CO2 separation membranes. Separation and Purification Technology. 326. 124704–124704. 27 indexed citations
12.
Shu, Lian, et al.. (2023). Integration of CuS@MIL-100 into cellulose hydrogel for synergistic seawater desalination and photocatalytic decontamination. Separation and Purification Technology. 334. 125971–125971. 30 indexed citations
13.
Yang, Y.B., et al.. (2023). Seismic analysis of underground tunnels subjected to 3D oblique incident P and SV waves by 2.5D approach. Underground Space. 12. 271–286. 7 indexed citations
14.
Zhang, Xiong‐Fei, et al.. (2023). Nitrogen addition mediates monospecific and mixed litter decomposition in a boreal peatland. CATENA. 225. 107051–107051. 3 indexed citations
15.
Li, Mengjie, et al.. (2023). MXene Functionalized Wood Composite Films for Efficient Electromagnetic Interference Shielding and Pressure Sensing. Advanced Materials Technologies. 9(1). 14 indexed citations
16.
Gu, Ling, Zhihui Li, Xiong‐Fei Zhang, et al.. (2023). Identification of MAP Kinase Kinase 3 as a protein target of myricetin in non-small cell lung cancer cells. Biomedicine & Pharmacotherapy. 161. 114460–114460. 10 indexed citations
17.
Wang, Jin, Ling Gu, Shiping Zhang, et al.. (2022). Induction of Ferroptosis by Ophiopogonin-B Through Regulating the Gene Signature AURKA in NSCLC. Frontiers in Oncology. 12. 833814–833814. 18 indexed citations
18.
Chan‐Seng, Delphine, et al.. (2008). Polyester-graft-phosphorylcholine prepared by ring-opening polymerization and click chemistry. Chemical Communications. 815–817. 32 indexed citations
19.
Bruckman, Michael A., Gagandeep Kaur, Fang Xie, et al.. (2008). Surface Modification of Tobacco Mosaic Virus with “Click” Chemistry. ChemBioChem. 9(4). 519–523. 173 indexed citations
20.
Zhang, Xiong‐Fei, et al.. (2002). Extraction of Germanium from Zinc Sulphate Solution. 5 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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