Meng Wang

4.5k total citations · 1 hit paper
98 papers, 3.8k citations indexed

About

Meng Wang is a scholar working on Electrical and Electronic Engineering, Polymers and Plastics and Materials Chemistry. According to data from OpenAlex, Meng Wang has authored 98 papers receiving a total of 3.8k indexed citations (citations by other indexed papers that have themselves been cited), including 73 papers in Electrical and Electronic Engineering, 28 papers in Polymers and Plastics and 25 papers in Materials Chemistry. Recurrent topics in Meng Wang's work include Conducting polymers and applications (27 papers), Organic Electronics and Photovoltaics (25 papers) and Perovskite Materials and Applications (24 papers). Meng Wang is often cited by papers focused on Conducting polymers and applications (27 papers), Organic Electronics and Photovoltaics (25 papers) and Perovskite Materials and Applications (24 papers). Meng Wang collaborates with scholars based in China, Hong Kong and United Kingdom. Meng Wang's co-authors include Yongbing Tang, Xiaohe Song, Hui–Ming Cheng, Chunlei Jiang, Songquan Zhang, Fan Zhang, Chun‐Sing Lee, Xueyuan Chen, Qingdong Zheng and Datao Tu and has published in prestigious journals such as Advanced Materials, Angewandte Chemie International Edition and SHILAP Revista de lepidopterología.

In The Last Decade

Meng Wang

90 papers receiving 3.8k citations

Hit Papers

Reversible calcium alloying enables a practical room-temp... 2018 2026 2020 2023 2018 400 800 1.2k

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Meng Wang China 28 2.7k 1.1k 813 707 509 98 3.8k
Mengjie Li China 27 2.0k 0.7× 719 0.7× 463 0.6× 422 0.6× 249 0.5× 132 3.0k
Nan Wei China 33 2.3k 0.8× 1.5k 1.4× 566 0.7× 490 0.7× 812 1.6× 148 4.0k
Hongbo Wang China 32 3.0k 1.1× 1.5k 1.4× 1.3k 1.6× 248 0.4× 452 0.9× 149 4.3k
Jin‐Soo Kim South Korea 34 5.0k 1.8× 1.2k 1.1× 1.1k 1.4× 483 0.7× 393 0.8× 151 5.9k
Hongwei Chen China 35 3.1k 1.1× 1.5k 1.4× 567 0.7× 504 0.7× 285 0.6× 172 4.7k
Pan Zeng China 37 2.6k 0.9× 1.2k 1.1× 539 0.7× 232 0.3× 345 0.7× 213 4.6k
Zhao Li China 32 2.5k 0.9× 1.4k 1.3× 1.1k 1.4× 217 0.3× 321 0.6× 117 4.1k
Cong Wang China 36 2.8k 1.0× 1.9k 1.8× 958 1.2× 258 0.4× 830 1.6× 200 4.7k
He Huang China 35 4.2k 1.5× 1.7k 1.5× 886 1.1× 307 0.4× 674 1.3× 140 6.1k

Countries citing papers authored by Meng Wang

Since Specialization
Citations

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

Fields of papers citing papers by Meng Wang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Meng Wang

This figure shows the co-authorship network connecting the top 25 collaborators of Meng Wang. A scholar is included among the top collaborators of Meng 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 Meng Wang. Meng 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.
Wang, Meng, Dehai Liang, Saif M. H. Qaid, et al.. (2025). Dual-band-tunable all-inorganic Zn-based metal halides for optical anti-counterfeiting. Opto-Electronic Advances. 8(10). 250105–250105.
2.
Jia, Hanxiao, et al.. (2024). Local charge regulation via selenium vacancies engineering in dielectric cobalt diselenide with enhanced microwave absorption. Chemical Engineering Journal. 496. 153783–153783. 17 indexed citations
4.
Li, Zheng, Yingying Yang, Can Li, et al.. (2024). Genetic regulation of wheat plant architecture and future prospects for its improvement. 2. 100048–100048. 4 indexed citations
5.
Liu, Jiaqing, Xiaomei Gao, Meng Wang, et al.. (2024). 3-Methylthiophene: A Sustainable Solvent for High-Performance Organic Solar Cells. ACS Applied Materials & Interfaces. 16(38). 50916–50925.
6.
Wang, Meng, Xu Chen, Fei Zhang, et al.. (2024). Colloidal Synthesis of Blue-Emitting Cs3TmCl6 Nanocrystals via Localized Excitonic Recombination for Down-Conversion White Light-Emitting Diodes. ACS Nano. 18(44). 30421–30432. 15 indexed citations
7.
Wu, Lei, Meng Wang, Jinke Chang, et al.. (2024). Tunable Light-Responsive Polyurethane-urea Elastomer Driven by Photochemical and Photothermal Coupling Mechanism. ACS Applied Materials & Interfaces. 16(15). 19480–19495. 15 indexed citations
8.
Li, Cong, Jinzhong Liu, Hongyun Zhang, et al.. (2024). Enhancing chemomechanical stability and high-rate performance of nickel-rich cathodes for lithium-ion batteries through three-in-one modification. Energy storage materials. 74. 103893–103893. 27 indexed citations
9.
Wang, Meng. (2023). Study on Ternary Blend Organic Solar Cells Based on Multiple Non-fullerene Acceptors. SHILAP Revista de lepidopterología. 380. 1014–1014.
10.
Liu, Min, Qiang Zhang, Xiaoke Zhang, et al.. (2023). A novel rechargeable Magnesium–Air battery using “All in one” Mg anode with high reversibility. Chemical Engineering Journal. 472. 145154–145154. 10 indexed citations
11.
Li, Yiming, Jiaqing Liu, Xuan Li, et al.. (2023). Synthesis of Crown Ether End-Capped PM6 Copolymers with Tunable Molecular Weight for Organic Solar Cells. Macromolecules. 56(16). 6276–6289. 4 indexed citations
12.
Wang, Meng, Zhi Wan, Zhihao Li, et al.. (2023). Full spectrum solar hydrogen production by tandems of perovskite solar cells and photothermal enhanced electrocatalysts. Chemical Engineering Journal. 460. 141702–141702. 17 indexed citations
13.
Wang, Meng, Peipei Sun, Wenshuai Zhang, et al.. (2023). Super-assembled compressible carbon frameworks featuring enriched heteroatom defect sites for flexible Zn–air batteries. NPG Asia Materials. 15(1). 13 indexed citations
14.
Wang, Yazhou, Fei Yu, Meng Wang, et al.. (2021). Temperature-Dependent Group Delay of Photonic-Bandgap Hollow-Core Fiber Tuned by Surface-Mode Coupling. Optics Express. 30(1). 222–222. 4 indexed citations
15.
Gao, Chaofeng, Ruiping Li, Yiran Li, et al.. (2019). Direct–Indirect Transition of Pressurized Two-Dimensional Halide Perovskite: Role of Benzene Ring Stack Ordering. The Journal of Physical Chemistry Letters. 10(19). 5687–5693. 31 indexed citations
16.
Wang, Meng, et al.. (2016). Analysis of vacuum insulator stack flashover probability with statistical model. High Power Laser and Particle Beams. 28(4). 45006. 1 indexed citations
17.
Wang, Meng, et al.. (2015). Impact of soft X-ray irradiation on surface flashover performance of insulating material. High Power Laser and Particle Beams. 27(9). 1 indexed citations
18.
Wang, Meng, Shaowei Shi, Di Ma, et al.. (2014). Effect of Extended π‐Conjugation Structure of Donor–Acceptor Conjugated Copolymers on the Photoelectronic Properties. Chemistry - An Asian Journal. 9(10). 2961–2969. 9 indexed citations
19.
Wang, Meng, et al.. (2014). Characteristics of grooved insulator flashover under pulsed voltage. High Power Laser and Particle Beams. 26(4). 45049. 2 indexed citations
20.
Zhang, Kaizhi, Wen Hui Long, Meng Wang, et al.. (2005). Development of Dragon-I injector. 29(3). 219–223.

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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