Shengfei Wang

1.1k total citations
90 papers, 722 citations indexed

About

Shengfei Wang is a scholar working on Aerospace Engineering, Computational Mechanics and Biomedical Engineering. According to data from OpenAlex, Shengfei Wang has authored 90 papers receiving a total of 722 indexed citations (citations by other indexed papers that have themselves been cited), including 28 papers in Aerospace Engineering, 24 papers in Computational Mechanics and 22 papers in Biomedical Engineering. Recurrent topics in Shengfei Wang's work include Nuclear Engineering Thermal-Hydraulics (25 papers), Laser Material Processing Techniques (20 papers) and Advanced Surface Polishing Techniques (16 papers). Shengfei Wang is often cited by papers focused on Nuclear Engineering Thermal-Hydraulics (25 papers), Laser Material Processing Techniques (20 papers) and Advanced Surface Polishing Techniques (16 papers). Shengfei Wang collaborates with scholars based in China, United States and France. Shengfei Wang's co-authors include Xiangyang Lei, Jianfeng Zhang, Qiao Xu, Jian Wang, Chenhui An, Feihu Zhang, Zhichao Liu, Fenglei Niu, Jian Cheng and Feng Geng and has published in prestigious journals such as Journal of the American Chemical Society, Journal of Biological Chemistry and SHILAP Revista de lepidopterología.

In The Last Decade

Shengfei Wang

83 papers receiving 697 citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Shengfei Wang China 15 258 175 160 124 120 90 722
Yanxing Wang United States 18 274 1.1× 364 2.1× 164 1.0× 30 0.2× 127 1.1× 52 780
Daniela P. Boso Italy 16 451 1.7× 85 0.5× 117 0.7× 145 1.2× 129 1.1× 56 1.2k
Xiangbin Li China 15 70 0.3× 135 0.8× 108 0.7× 189 1.5× 119 1.0× 60 738
Ean Hin Ooi Malaysia 16 434 1.7× 147 0.8× 53 0.3× 134 1.1× 38 0.3× 74 896
Lung‐Kwang Pan Taiwan 12 215 0.8× 49 0.3× 57 0.4× 273 2.2× 59 0.5× 76 750
Hiroyuki Murata Japan 19 201 0.8× 230 1.3× 92 0.6× 230 1.9× 227 1.9× 59 1.4k
Ewa Majchrzak Poland 21 280 1.1× 341 1.9× 141 0.9× 368 3.0× 67 0.6× 168 1.5k
Hao He China 19 86 0.3× 54 0.3× 179 1.1× 212 1.7× 65 0.5× 78 1.1k
Weibo Wang China 15 63 0.2× 54 0.3× 187 1.2× 110 0.9× 38 0.3× 88 978

Countries citing papers authored by Shengfei Wang

Since Specialization
Citations

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

Fields of papers citing papers by Shengfei Wang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Shengfei Wang

This figure shows the co-authorship network connecting the top 25 collaborators of Shengfei Wang. A scholar is included among the top collaborators of Shengfei Wang 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 Shengfei Wang. Shengfei Wang 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.
Zhang, Zihao, et al.. (2025). Numerical simulation of condensate-induced water hammer with dynamic valve control using an advanced phase change model. Progress in Nuclear Energy. 180. 105631–105631.
2.
Cheng, Jian, Guang Chen, Mingjun Chen, et al.. (2025). Overview of advanced optical manufacturing techniques applied in regulating laser damage precursors in nonlinear functional KH<sub>x</sub>D<sub>2-x</sub>PO<sub>4</sub> crystal. Light Advanced Manufacturing. 6(3). 1–1. 2 indexed citations
4.
Zhao, Linjie, Jian Cheng, Mingjun Chen, et al.. (2025). Driving mechanism of the morphology evolution involved in the micro-defect healing process of fused silica optics under the non-evaporative CO2 laser irradiation. Optics & Laser Technology. 188. 113013–113013. 1 indexed citations
5.
Ji, Yong, et al.. (2025). The expression and functional role of proline-rich 15 in non-small cell lung cancer. Cell Death and Disease. 16(1). 83–83.
6.
Xiong, Feng, Jiaming Zhao, Xiaoxia Chen, et al.. (2024). Improved CFD simulation of water hammer caused by condensation with an enhanced phase change model. Progress in Nuclear Energy. 173. 105242–105242. 2 indexed citations
7.
Zhao, Jiaming, et al.. (2024). Scaling analysis for the condensation induced water hammer effect in horizontal pipe. Nuclear Engineering and Design. 418. 112898–112898. 2 indexed citations
8.
Wang, Shengfei, et al.. (2023). Effect of K-promoter use in iron-based plasma-catalytic conversion of CO2 and CH4 into higher value products. Applied Catalysis A General. 663. 119315–119315. 7 indexed citations
9.
Cheng, Jian, Linjie Zhao, Mingjun Chen, et al.. (2023). Relationship between the photoluminescence envelope area of surface defects and the laser-induced damage thresholds of mechanically machined fused silica optical surfaces. Ceramics International. 49(14). 22767–22781. 13 indexed citations
10.
Cheng, Jian, Linjie Zhao, Mingjun Chen, et al.. (2023). Mechanisms of the sharp decrease of the LIDT from the plastic surface defect to the brittle surface defect on optical surface. Applied Surface Science. 629. 157394–157394. 18 indexed citations
11.
Ding, Wenyu, Linjie Zhao, Mingjun Chen, et al.. (2023). Determination of stress waves and their effect on the damage extension induced by surface defects of KDP crystals under intense laser irradiation. Optica. 10(6). 671–671. 45 indexed citations
12.
Wang, Shengfei, Aishun Ding, Guolin Lu, et al.. (2021). First polyallene-based well-defined amphiphilic diblock copolymer via RAFT polymerization. Polymer Chemistry. 12(21). 3088–3095. 4 indexed citations
14.
Fan, Fei, Qiao Xu, Jian Wang, et al.. (2020). Progress on ultra precision manufacturing technology of large-aperture high-power laser optics. Guangdian gongcheng. 47(8). 200135. 3 indexed citations
15.
Wang, Yong, et al.. (2016). GPS和无线电探空的水汽变化与PM 2.5 /PM 10 变化的相关性研究. 41(12). 1626–1631. 1 indexed citations
16.
Wang, Long, et al.. (2016). Comparative investigations on pilot-scale anaerobic digestion of food waste at 30°C and 35°C. International journal of agricultural and biological engineering. 9(1). 109–117. 4 indexed citations
17.
Wang, Shengfei. (2012). Wind Power Forecasting Using Time Series Model Based on Robust Estimation. Proceedings of the Chinese Society of Universities for Electric Power System and its Automation. 1 indexed citations
18.
Wang, Shengfei. (2010). The Method and Application of the Closed Reconstruction of Green Agricultural Product Supply Chain. Ruan kexue. 1 indexed citations
19.
Wang, Shengfei. (2010). The Co-evolution of Industrial Cluster Ecosystem based on Loop Analysis. 1 indexed citations
20.
Li, Rongping, Shengfei Wang, & Xiujin Li. (2008). Biogasification performance of anaerobic co-digestion of kitchen residues and cattle manure. Renewable Energy Resources. 26(2). 64–68. 4 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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