Juqing Cui

989 total citations
35 papers, 830 citations indexed

About

Juqing Cui is a scholar working on Biomedical Engineering, Biomaterials and Water Science and Technology. According to data from OpenAlex, Juqing Cui has authored 35 papers receiving a total of 830 indexed citations (citations by other indexed papers that have themselves been cited), including 15 papers in Biomedical Engineering, 10 papers in Biomaterials and 10 papers in Water Science and Technology. Recurrent topics in Juqing Cui's work include Lignin and Wood Chemistry (7 papers), Advanced oxidation water treatment (7 papers) and Advanced Photocatalysis Techniques (6 papers). Juqing Cui is often cited by papers focused on Lignin and Wood Chemistry (7 papers), Advanced oxidation water treatment (7 papers) and Advanced Photocatalysis Techniques (6 papers). Juqing Cui collaborates with scholars based in China, France and Australia. Juqing Cui's co-authors include Lu Gan, Shuguang Han, Lijie Xu, Xingyu Fang, Aobo Geng, Linjie Wang, Ying Wu, Chi Song, Linjie Wang and Changtong Mei and has published in prestigious journals such as The Science of The Total Environment, Journal of Hazardous Materials and Chemical Engineering Journal.

In The Last Decade

Juqing Cui

35 papers receiving 823 citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Juqing Cui China 16 358 354 258 218 141 35 830
Shuguang Han China 16 540 1.5× 399 1.1× 226 0.9× 335 1.5× 95 0.7× 31 932
Yuben Qin China 17 165 0.5× 263 0.7× 211 0.8× 195 0.9× 152 1.1× 33 777
Wagih A. Sadik Egypt 22 416 1.2× 273 0.8× 362 1.4× 390 1.8× 159 1.1× 54 1.2k
Safia Syazana Mohtar Malaysia 16 324 0.9× 141 0.4× 254 1.0× 314 1.4× 103 0.7× 29 849
Seyedehmaryam Moosavi Malaysia 12 159 0.4× 269 0.8× 184 0.7× 268 1.2× 224 1.6× 22 866
Eman S. Mansor Egypt 19 197 0.6× 408 1.2× 209 0.8× 166 0.8× 68 0.5× 39 708
Lvling Zhong China 18 175 0.5× 241 0.7× 180 0.7× 300 1.4× 207 1.5× 31 783
Ting Huang China 15 293 0.8× 213 0.6× 137 0.5× 228 1.0× 89 0.6× 33 773
Omid Akbarzadeh Malaysia 16 231 0.6× 241 0.7× 257 1.0× 373 1.7× 62 0.4× 40 1.0k

Countries citing papers authored by Juqing Cui

Since Specialization
Citations

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

Fields of papers citing papers by Juqing Cui

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Juqing Cui. 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 Juqing Cui. The network helps show where Juqing Cui may publish in the future.

Co-authorship network of co-authors of Juqing Cui

This figure shows the co-authorship network connecting the top 25 collaborators of Juqing Cui. A scholar is included among the top collaborators of Juqing Cui 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 Juqing Cui. Juqing Cui 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.
Ma, Yuanyuan, Lei He, Qian Han, et al.. (2025). Multifunctional Chitosan/Cellulose/Tannic Acid Biocomposite Sponge with Excellent Biocompatibility for Rapid Hemostasis. Biomacromolecules. 26(4). 2467–2478. 4 indexed citations
3.
He, Lei, Genyuan Li, Heyan Wang, et al.. (2024). Rapidly molded sodium alginate/soy protein adhesive hydrogel with 808-nm laser inhibition of infected wounds. International Journal of Biological Macromolecules. 279(Pt 3). 135471–135471. 3 indexed citations
4.
Liu, Fangfang, et al.. (2024). Eco-friendly and novel tannin-based wood adhesive enhanced with cellulose nanofibrils grafted by hyperbranched polyamides. Industrial Crops and Products. 222. 119576–119576. 8 indexed citations
5.
He, Lei, Yongze Liu, Jiong Shi, et al.. (2024). Flexible Wood-Based Janus Hydrogel for Nasal Infection. ACS Sustainable Chemistry & Engineering. 12(21). 8091–8103. 6 indexed citations
6.
He, Lei, Lei Wang, Juqing Cui, et al.. (2024). Functionalized Ti3C2Tx MXene Nanosheets for Increased Emulsion Viscosity and Enhanced Heavy Oil Recovery. ACS Applied Nano Materials. 7(12). 14769–14779. 2 indexed citations
7.
Zhang, Fang, Lei Wang, Yong Dai, et al.. (2023). Recoverable magnetic Fe-MOF immobilized carrier to immobilize two microorganisms for reduction of heavy oil viscosity and oilfield wastewater COD. Journal of Water Process Engineering. 56. 104459–104459. 12 indexed citations
8.
He, Lei, Yong Dai, Jingjie Hou, et al.. (2023). MXene based immobilized microorganism for chemical oxygen demand reduction of oilfield wastewater and heavy oil viscosity reduction to enhance recovery. Journal of environmental chemical engineering. 11(2). 109376–109376. 8 indexed citations
9.
Fang, Xingyu, Lu Gan, Linjie Wang, et al.. (2021). Enhanced degradation of bisphenol A by mixed ZIF derived CoZn oxide encapsulated N-doped carbon via peroxymonosulfate activation: The importance of N doping amount. Journal of Hazardous Materials. 419. 126363–126363. 94 indexed citations
10.
Shi, Jiangtao, Xingyu Fang, Lijie Xu, et al.. (2021). Waste preserved wood derived biochar catalyst for promoted peroxymonosulfate activation towards bisphenol A degradation with low metal ion release: The insight into the mechanisms. The Science of The Total Environment. 813. 152673–152673. 27 indexed citations
11.
Wu, Ying, Chi Song, Linjie Wang, et al.. (2021). Construction of ZIF@electrospun cellulose nanofiber derived N doped metallic cobalt embedded carbon nanofiber composite as binder-free supercapacitance electrode. Carbohydrate Polymers. 267. 118166–118166. 35 indexed citations
12.
Gan, Lu, Linjie Wang, Lijie Xu, et al.. (2021). Fe3C-porous carbon derived from Fe2O3 loaded MOF-74(Zn) for the removal of high concentration BPA: The integrations of adsorptive/catalytic synergies and radical/non-radical mechanisms. Journal of Hazardous Materials. 413. 125305–125305. 86 indexed citations
15.
Ji, Yujie, Qi Xia, Juqing Cui, et al.. (2020). High pressure laminates reinforced with electrospun cellulose acetate nanofibers. Carbohydrate Polymers. 254. 117461–117461. 15 indexed citations
17.
Gan, Lu, Qiang Zhong, Aobo Geng, et al.. (2019). Cellulose derived carbon nanofiber: A promising biochar support to enhance the catalytic performance of CoFe2O4 in activating peroxymonosulfate for recycled dimethyl phthalate degradation. The Science of The Total Environment. 694. 133705–133705. 134 indexed citations
18.
Lan, Ping, et al.. (2017). Selective Biodegradation of Grape Pomace Tannins by Aspergillus niger and Application in Wood Adhesive. BioResources. 13(1). 7 indexed citations
19.
Zhang, Yang, Cong Liu, Siqun Wang, et al.. (2015). THE INFLUENCE OF NANOCELLULOSE AND SILICON DIOXIDE ON THE MECHANICAL PROPERTIES OF THE CELL WALL WITH RELATION TO THE BOND INTERFACE BETWEEN WOOD AND UREA-FORMALDEHYDE RESIN. Wood and Fiber Science. 47(3). 249–257. 6 indexed citations
20.
Hou, Qingfeng, Xiancai Lu, Xiandong Liu, et al.. (2004). The surface fractal investigation on carbon nanotubes modified by the adsorption of poly(acrylic acid). Surface and Coatings Technology. 190(2-3). 394–399. 10 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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