Dayong He

655 total citations
21 papers, 570 citations indexed

About

Dayong He is a scholar working on Materials Chemistry, Biomedical Engineering and Electronic, Optical and Magnetic Materials. According to data from OpenAlex, Dayong He has authored 21 papers receiving a total of 570 indexed citations (citations by other indexed papers that have themselves been cited), including 9 papers in Materials Chemistry, 7 papers in Biomedical Engineering and 5 papers in Electronic, Optical and Magnetic Materials. Recurrent topics in Dayong He's work include Electromagnetic wave absorption materials (4 papers), Advanced Surface Polishing Techniques (4 papers) and Advanced Antenna and Metasurface Technologies (4 papers). Dayong He is often cited by papers focused on Electromagnetic wave absorption materials (4 papers), Advanced Surface Polishing Techniques (4 papers) and Advanced Antenna and Metasurface Technologies (4 papers). Dayong He collaborates with scholars based in China, United States and South Korea. Dayong He's co-authors include Ce Wang, Ju Qiu, Bingzheng Jiang, Yuying Ma, Rui Zhao, Bolun Sun, Xiaofeng Lu, He Ji, Darrell H. Reneker and Yongxin Li and has published in prestigious journals such as Journal of Colloid and Interface Science, Electrochimica Acta and Materials Science and Engineering A.

In The Last Decade

Dayong He

21 papers receiving 561 citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Dayong He China 14 181 177 168 162 97 21 570
Yudong Shang China 13 366 2.0× 212 1.2× 190 1.1× 175 1.1× 129 1.3× 25 712
Zachary Larimore United States 14 164 0.9× 360 2.0× 226 1.3× 165 1.0× 147 1.5× 31 986
Xuchao Pan China 13 58 0.3× 156 0.9× 213 1.3× 117 0.7× 99 1.0× 40 561
Nima Moghimian Canada 14 261 1.4× 294 1.7× 278 1.7× 271 1.7× 74 0.8× 33 730
Rahim Jan Pakistan 16 299 1.7× 287 1.6× 284 1.7× 195 1.2× 55 0.6× 50 729
Jin Yu China 9 448 2.5× 142 0.8× 116 0.7× 175 1.1× 52 0.5× 23 615
Hongfeng Yin China 18 305 1.7× 338 1.9× 117 0.7× 100 0.6× 134 1.4× 46 686
Yingmin Cui China 6 109 0.6× 120 0.7× 343 2.0× 168 1.0× 98 1.0× 18 827
Shengyao Li China 12 98 0.5× 378 2.1× 128 0.8× 92 0.6× 240 2.5× 26 638

Countries citing papers authored by Dayong He

Since Specialization
Citations

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

Fields of papers citing papers by Dayong He

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Dayong He

This figure shows the co-authorship network connecting the top 25 collaborators of Dayong He. A scholar is included among the top collaborators of Dayong He 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 Dayong He. Dayong He 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.
He, Dayong, Chao Wang, Rui Zhao, et al.. (2022). BiOX (X = Cl, Br, I)/WO3/Polyacrylonitrile Nanofibrous Membranes for Diagnostic X-Ray Shielding and Visible-Light Photocatalysis. ACS Applied Nano Materials. 5(3). 4157–4169. 13 indexed citations
2.
Wang, Chao, Dayong He, Hui Zhao, Ce Wang, & Kaizhong Wang. (2022). Study on high efficiency and fast photodegradation of Bi2WO6/BiOBr/PAN nanofibrous film. Journal of Materials Research and Technology. 17. 2818–2830. 13 indexed citations
3.
Wang, Hao, Dayong He, Ju Qiu, et al.. (2022). PAN/W18O49/Ag nanofibrous membrane for high-efficient and multi-band electromagnetic-interference shielding with broad temperature tolerance and good thermal isolating capacity. Composites Part B Engineering. 236. 109793–109793. 21 indexed citations
5.
He, Dayong, Aamir Iqbal, Yuying Ma, et al.. (2021). Multispectral electromagnetic shielding using ultra-thin metal-metal oxide decorated hybrid nanofiber membranes. Communications Materials. 2(1). 19 indexed citations
6.
Jia, Xiaoteng, Dayong He, Yuying Ma, et al.. (2021). Superhydrophobic and Corrosion-Resistant Electrospun Hybrid Membrane for High-Efficiency Electromagnetic Interference Shielding. ACS Applied Electronic Materials. 3(5). 2067–2078. 40 indexed citations
7.
Huang, Hui, Dayong He, Mei Yang, et al.. (2021). Gallic Acid/2-Hydroxypropyl-β-cyclodextrin Inclusion Complexes Electrospun Nanofibrous Webs: Fast Dissolution, Improved Aqueous Solubility and Antioxidant Property of Gallic Acid. Chemical Research in Chinese Universities. 37(3). 450–455. 25 indexed citations
8.
Li, Wenyan, Chao Shen, Yanzi Li, et al.. (2020). Preparation of MnO2 Loaded Hydrothermal Carbon-coated Electrospun PAN Fiber Membranes for Highly Efficient Adsorption and Separation of Cationic Dye. Chemical Research in Chinese Universities. 36(6). 1292–1301. 10 indexed citations
9.
Ma, Yuying, Dayong He, Jiadi Liu, et al.. (2020). Adsorption and Visible Light Photocatalytic Degradation of Electrospun PAN@W18O49 Nanofibers. Chemical Research in Chinese Universities. 37(3). 428–435. 10 indexed citations
11.
Sun, Bolun, Xiang Li, Rui Zhao, et al.. (2018). Electrospun poly(vinylidene fluoride)-zinc oxide hierarchical composite fiber membrane as piezoelectric acoustoelectric nanogenerator. Journal of Materials Science. 54(3). 2754–2762. 74 indexed citations
12.
Qiu, Ju, Dayong He, Rui Zhao, et al.. (2018). Fabrication of highly dispersed ultrafine Co 9 S 8 nanoparticles on carbon nanofibers as low-cost counter electrode for dye-sensitized solar cells. Journal of Colloid and Interface Science. 522. 95–103. 27 indexed citations
14.
He, Dayong, et al.. (2016). Nanoindentation simulation on single crystal copper by quasi-continuum method. Materials Science and Engineering A. 674. 76–81. 14 indexed citations
15.
He, Dayong, et al.. (2016). 3D Wear Area Reconstruction of Grinding Wheel by Frequency-Domain Fusion. The International Journal of Advanced Manufacturing Technology. 88(1-4). 1111–1117. 7 indexed citations
16.
He, Dayong, et al.. (2016). Role of crystal orientation on chemical mechanical polishing of single crystal copper. Applied Surface Science. 386. 262–268. 10 indexed citations
17.
Wang, Liqin, et al.. (2011). Toughening of polycarbonate with PBA-PMMA core-shell particles. Chinese Journal of Polymer Science. 23(3). 337–340. 4 indexed citations
18.
He, Dayong, Darrell H. Reneker, & Wayne L. Mattice. (1997). Fully atomistic models of the surface of amorphous polyethylene. Computational and Theoretical Polymer Science. 7(1). 19–24. 29 indexed citations
19.
Jiang, Wei, Haojun Liang, Jilin Zhang, Dayong He, & Bingzheng Jiang. (1995). Effect of particle size on impact strength of polymer blends. Journal of Applied Polymer Science. 58(3). 537–539. 13 indexed citations
20.
He, Dayong & Bingzheng Jiang. (1993). The elastic modulus of filled polymer composites. Journal of Applied Polymer Science. 49(4). 617–621. 70 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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