Xuedong Xie

1.5k total citations · 1 hit paper
29 papers, 443 citations indexed

About

Xuedong Xie is a scholar working on Materials Chemistry, Electrical and Electronic Engineering and Atomic and Molecular Physics, and Optics. According to data from OpenAlex, Xuedong Xie has authored 29 papers receiving a total of 443 indexed citations (citations by other indexed papers that have themselves been cited), including 18 papers in Materials Chemistry, 12 papers in Electrical and Electronic Engineering and 7 papers in Atomic and Molecular Physics, and Optics. Recurrent topics in Xuedong Xie's work include 2D Materials and Applications (11 papers), Graphene research and applications (10 papers) and Topological Materials and Phenomena (6 papers). Xuedong Xie is often cited by papers focused on 2D Materials and Applications (11 papers), Graphene research and applications (10 papers) and Topological Materials and Phenomena (6 papers). Xuedong Xie collaborates with scholars based in China, Hong Kong and France. Xuedong Xie's co-authors include Junyu Zong, Yi Zhang, Wang Chen, Xiaoxiang Xi, Jian Sun, Shao‐Chun Li, Hang Zheng, Libo Gao, Guowen Yuan and Yong Wang and has published in prestigious journals such as Nature, Advanced Materials and Nano Letters.

In The Last Decade

Xuedong Xie

27 papers receiving 432 citations

Hit Papers

Remolding the Interface S... 2025 2026 2025 5 10 15 20 25

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Xuedong Xie China 10 235 132 70 66 61 29 443
Ren‐Kun Qing China 7 71 0.3× 37 0.3× 118 1.7× 109 1.7× 28 0.5× 8 439
Peng Xiang China 10 85 0.4× 151 1.1× 16 0.2× 61 0.9× 84 1.4× 30 337
Zhongqi Yao China 7 96 0.4× 34 0.3× 159 2.3× 87 1.3× 60 1.0× 17 407
Jinxin Chen China 12 120 0.5× 126 1.0× 8 0.1× 49 0.7× 32 0.5× 31 385
Yuxin You China 11 109 0.5× 39 0.3× 19 0.3× 91 1.4× 105 1.7× 25 339
Gang Tao China 11 93 0.4× 221 1.7× 38 0.5× 76 1.2× 3 0.0× 32 387
Stéphanie Pace Australia 9 204 0.9× 121 0.9× 160 2.3× 296 4.5× 5 0.1× 16 593
Udit Kumar United States 11 217 0.9× 68 0.5× 19 0.3× 87 1.3× 11 0.2× 25 372
Junye Tong China 11 107 0.5× 194 1.5× 12 0.2× 121 1.8× 14 0.2× 23 410

Countries citing papers authored by Xuedong Xie

Since Specialization
Citations

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

Fields of papers citing papers by Xuedong Xie

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Xuedong Xie

This figure shows the co-authorship network connecting the top 25 collaborators of Xuedong Xie. A scholar is included among the top collaborators of Xuedong Xie 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 Xuedong Xie. Xuedong Xie 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.
Chen, Wang, Mengli Hu, Junyu Zong, et al.. (2025). Temperature Effects on the Electronic Structures of Epitaxial 1T′-WSe2 Monolayers. The Journal of Physical Chemistry Letters. 16(9). 2188–2195. 2 indexed citations
2.
Xie, Xuedong, et al.. (2025). Compression resistance of horsetail-inspired porous thin-walled structures. Proceedings of the Institution of Mechanical Engineers Part L Journal of Materials Design and Applications. 240(2). 331–340.
3.
Yang, Tao, Hongbo Wu, Chao Liu, et al.. (2025). Janus Adsorption of Polar Ion Hubs for Simultaneous Regulation of Zinc Deposition Kinetics and Interfacial Stability in Long‐Cycle Aqueous Zinc‐Ion Batteries. Advanced Functional Materials. 36(2). 6 indexed citations
4.
Wang, Rui, Yangyang Liu, Qiquan Luo, et al.. (2025). Remolding the Interface Stability for Practical Aqueous Zn/I2 Batteries via Sulfonic Acid‐Rich Electrolyte and Separator Design. Advanced Materials. 37(16). e2419502–e2419502. 27 indexed citations breakdown →
5.
Xie, Xuedong, et al.. (2025). Energy absorption and mechanical properties of bio-inspired porous helical layer structures. Composite Structures. 372. 119584–119584. 1 indexed citations
6.
Yan, Wenjing, Xuedong Xie, Qianqian Jin, et al.. (2024). Restoration of follicular β-catenin signaling by mesenchymal stem cells promotes hair growth in mice with androgenetic alopecia. Stem Cell Research & Therapy. 15(1). 439–439. 6 indexed citations
7.
Xie, Xuedong, et al.. (2024). Research Status of Heat Dissipation Technology for Electric Vehicle Drive Motors. Recent Patents on Engineering. 19(5).
8.
Zong, Junyu, Kaili Wang, Qinghao Meng, et al.. (2022). Band structures of molecular beam epitaxially grown MoSe2–WSe2 heterobilayers with different stacking orders on SrTiO3(111) substrate. Applied Physics Letters. 121(11). 3 indexed citations
9.
Zong, Junyu, Qinghao Meng, Wang Chen, et al.. (2022). Observation of multiple charge density wave phases in epitaxial monolayer 1T-VSe 2 film. Chinese Physics B. 31(10). 107301–107301. 4 indexed citations
10.
Wang, Can, Huaiqiang Wang, Junyu Zong, et al.. (2022). Suppression of Intervalley Coupling in Graphene via Potassium Doping. The Journal of Physical Chemistry Letters. 13(40). 9396–9403. 2 indexed citations
11.
Meng, Qinghao, Junyu Zong, Wang Chen, et al.. (2022). Selectable Growth and Electronic Structures of Monolayer 1T‐VSe2 and V5Se8 Films on Bilayer Graphene. physica status solidi (RRL) - Rapid Research Letters. 16(6). 4 indexed citations
12.
Xie, Xuedong, et al.. (2022). An Evaluation Model of Talent Attraction in Fujian Province Based on Principal Component Analysis. Advances in Economics and Management Research. 1(1). 172–172. 2 indexed citations
13.
Wang, Can, Huaiqiang Wang, Wang Chen, et al.. (2021). Direct Observation of Global Elastic Intervalley Scattering Induced by Impurities on Graphene. Nano Letters. 21(19). 8258–8265. 9 indexed citations
14.
Zheng, Hang, Junyu Zong, Xuedong Xie, et al.. (2021). Surface etching during epitaxial h-BN growth on graphene. APL Materials. 9(7). 1 indexed citations
15.
Zhang, Wenqian, Lang Chen, Yuan Xiong, et al.. (2021). Antioxidant Therapy and Antioxidant-Related Bionanomaterials in Diabetic Wound Healing. Frontiers in Bioengineering and Biotechnology. 9. 707479–707479. 111 indexed citations
16.
Zhang, Yongheng, Xuedong Xie, Junyu Zong, et al.. (2021). Charge transfer between the epitaxial monolayer WSe2 films and graphene substrates. Applied Physics Letters. 119(11). 6 indexed citations
17.
Xie, Xuedong, Li Zhu, Qiyuan Li, et al.. (2021). Charge Density Wave and Electron-Phonon Interaction in Epitaxial Monolayer NbSe2 Films. Chinese Physics Letters. 38(10). 107101–107101. 11 indexed citations
18.
Chen, Wang, Mengli Hu, Junyu Zong, et al.. (2020). Epitaxial Growth of Single‐Phase 1T'‐WSe2 Monolayer with Assistance of Enhanced Interface Interaction. Advanced Materials. 33(7). e2004930–e2004930. 38 indexed citations
19.
Fu, Changjing, et al.. (2016). High Reversible Silicon/Graphene Nanocomposite Anode for Lithium-Ion Batteries. International Journal of Electrochemical Science. 11(1). 154–164. 14 indexed citations
20.
Yan, Shuhua, et al.. (2011). An interference signal processing method for displacement measurement by dual wavelength and single grating. Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE. 8321. 83211A–83211A. 1 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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