Jiyuan Fan

772 total citations
32 papers, 668 citations indexed

About

Jiyuan Fan is a scholar working on Mechanical Engineering, Materials Chemistry and Organic Chemistry. According to data from OpenAlex, Jiyuan Fan has authored 32 papers receiving a total of 668 indexed citations (citations by other indexed papers that have themselves been cited), including 27 papers in Mechanical Engineering, 25 papers in Materials Chemistry and 14 papers in Organic Chemistry. Recurrent topics in Jiyuan Fan's work include Catalysis and Hydrodesulfurization Studies (27 papers), Catalytic Processes in Materials Science (23 papers) and Nanomaterials for catalytic reactions (14 papers). Jiyuan Fan is often cited by papers focused on Catalysis and Hydrodesulfurization Studies (27 papers), Catalytic Processes in Materials Science (23 papers) and Nanomaterials for catalytic reactions (14 papers). Jiyuan Fan collaborates with scholars based in China, Saudi Arabia and Singapore. Jiyuan Fan's co-authors include Aijun Duan, Peng Zheng, Xilong Wang, Zhen Zhao, Jinlin Mei, Kebin Chi, Chunming Xu, Zhentao Chen, Chunming Xu and Chengkun Xiao and has published in prestigious journals such as Applied Catalysis B: Environmental, ACS Catalysis and Chemical Engineering Journal.

In The Last Decade

Jiyuan Fan

31 papers receiving 665 citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Jiyuan Fan China 16 580 489 372 113 70 32 668
Chengkun Xiao China 19 636 1.1× 552 1.1× 402 1.1× 143 1.3× 82 1.2× 42 763
Hamdy Farag Japan 18 701 1.2× 480 1.0× 404 1.1× 205 1.8× 49 0.7× 29 759
Д. И. Ишутенко Russia 12 420 0.7× 307 0.6× 214 0.6× 109 1.0× 51 0.7× 17 472
Florentino Murrieta Mexico 11 577 1.0× 527 1.1× 304 0.8× 119 1.1× 39 0.6× 14 681
Eva Schachtl Germany 7 307 0.5× 223 0.5× 176 0.5× 92 0.8× 77 1.1× 8 400
Jennifer Hein Germany 9 367 0.6× 249 0.5× 241 0.6× 101 0.9× 76 1.1× 11 425
Jundong Xu China 11 376 0.6× 359 0.7× 231 0.6× 79 0.7× 45 0.6× 26 492
Jianshe Zhao China 13 354 0.6× 354 0.7× 206 0.6× 60 0.5× 42 0.6× 30 520
F.J. Gil Llambías Chile 12 346 0.6× 356 0.7× 167 0.4× 77 0.7× 36 0.5× 19 458
Lilia Lizama Mexico 8 394 0.7× 444 0.9× 213 0.6× 96 0.8× 29 0.4× 8 516

Countries citing papers authored by Jiyuan Fan

Since Specialization
Citations

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

Fields of papers citing papers by Jiyuan Fan

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Jiyuan Fan

This figure shows the co-authorship network connecting the top 25 collaborators of Jiyuan Fan. A scholar is included among the top collaborators of Jiyuan Fan 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 Jiyuan Fan. Jiyuan Fan 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.
Mohamed, Hend Omar, Torsten Hoffmann, Jiyuan Fan, et al.. (2025). Dispersing zeolite in technical catalyst particles using a top spray fluidized bed reactor for methanol to hydrocarbons reaction. Chemical Engineering Journal. 509. 161126–161126. 1 indexed citations
2.
Sun, Ruize, et al.. (2025). Insight for designing metal-oxide supported hydrodesulfurization catalyst from the regulation of the NiMoS active edge sites. Separation and Purification Technology. 373. 133567–133567. 1 indexed citations
5.
Zhao, Ping, et al.. (2024). Analytical Multiport Coupling Matrix Synthesis From Partial Fraction Expansions of S-Parameters. IEEE Transactions on Microwave Theory and Techniques. 72(11). 6554–6562. 2 indexed citations
6.
Zhao, Ping, et al.. (2024). Coupling Matrix Synthesis With Repeated Poles in S-Parameters. IEEE Transactions on Microwave Theory and Techniques. 73(4). 2366–2375. 1 indexed citations
7.
Fan, Jiyuan, Hassnain Abbas Khan, Tairan Wang, et al.. (2023). Oxidative desulfurization of fuel oil and molecular characterization of the sulfone compound distribution in the different extractants. Separation and Purification Technology. 327. 124902–124902. 7 indexed citations
8.
Fan, Jiyuan, Honglei Zhang, Chengkun Xiao, et al.. (2021). Tuning physicochemical properties of hierarchically ZSM-5/FDU-12 composite material and its catalytic hydrodesulfurization performance for diesel. Catalysis Today. 374. 162–172. 12 indexed citations
9.
Fan, Jiyuan, Aiping Chen, Saumitra Saxena, et al.. (2021). Ultrasound-assisted oxidative desulfurization of Arabian extra light oil (AXL) with molecular characterization of the sulfur compounds. Fuel. 305. 121612–121612. 26 indexed citations
10.
Fan, Jiyuan, Chengkun Xiao, Jinlin Mei, et al.. (2021). A hierarchical ZSM-22/PHTS composite material and its hydro-isomerization performance in hydro-upgrading of gasoline. Catalysis Science & Technology. 11(16). 5448–5459. 7 indexed citations
11.
Zheng, Peng, Tianshu Li, Kebin Chi, et al.. (2019). DFT insights into the direct desulfurization pathways of DBT and 4,6-DMDBT catalyzed by Co-promoted and Ni-promoted MoS2 corner sites. Chemical Engineering Science. 206. 249–260. 34 indexed citations
12.
Zheng, Peng, Tianshu Li, Kebin Chi, et al.. (2019). DFT insights into the formation of sulfur vacancies over corner/edge site of Co/Ni-promoted MoS2 and WS2 under the hydrodesulfurization conditions. Applied Catalysis B: Environmental. 257. 117937–117937. 58 indexed citations
13.
Gong, Yanjun, Aijun Duan, Xin Wang, et al.. (2019). High-Performance Bimetal NiMo Catalysts Prepared over Novel Cubic Mesoporous Silica with a Cost-Efficient Method for the Removal of Dibenzothiophene. Industrial & Engineering Chemistry Research. 58(22). 9300–9313. 7 indexed citations
14.
Fan, Jiyuan, Aijun Duan, Xilong Wang, et al.. (2019). Hierarchically Ordered Micro-/Mesoporous Material Assembled by a Zeolite W Nanocrystal and Its Hydro-Upgrading Performance for FCC Gasoline. Industrial & Engineering Chemistry Research. 59(3). 1101–1112. 6 indexed citations
15.
Fan, Jiyuan, Aijun Duan, Chunming Xu, et al.. (2018). Hydrodesulfurization Properties of Dibenzothiophene over NiMo Catalysts Supported on Cubic Fm3m Mesoporous Structure and High-Framework Aluminum-Modified AlKIT-5. Energy & Fuels. 32(9). 9793–9803. 16 indexed citations
17.
18.
Wang, Xilong, Jiyuan Fan, Zhen Zhao, et al.. (2017). Hydro-upgrading Performance of Fluid Catalytic Cracking Diesel over Different Crystal Forms of Alumina-Supported CoMo Catalysts. Energy & Fuels. 31(7). 7456–7463. 32 indexed citations
19.
Fan, Jiyuan, Yang Xu, Zhen Zhao, et al.. (2017). Study on Hydrodesulfurization of L/W Coexistence Zeolite Modified by Magnesium for FCC Gasoline. Energy & Fuels. 32(1). 777–786. 11 indexed citations
20.
Zhang, Minghui, Jiyuan Fan, Kebin Chi, et al.. (2016). Synthesis, characterization, and catalytic performance of NiMo catalysts supported on different crystal alumina materials in the hydrodesulfurization of diesel. Fuel Processing Technology. 156. 446–453. 60 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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