Zihan Wang

3.9k total citations · 4 hit papers
106 papers, 2.4k citations indexed

About

Zihan Wang is a scholar working on Biomedical Engineering, Computer Vision and Pattern Recognition and Electrical and Electronic Engineering. According to data from OpenAlex, Zihan Wang has authored 106 papers receiving a total of 2.4k indexed citations (citations by other indexed papers that have themselves been cited), including 52 papers in Biomedical Engineering, 22 papers in Computer Vision and Pattern Recognition and 22 papers in Electrical and Electronic Engineering. Recurrent topics in Zihan Wang's work include Advanced Sensor and Energy Harvesting Materials (32 papers), Conducting polymers and applications (15 papers) and Tactile and Sensory Interactions (10 papers). Zihan Wang is often cited by papers focused on Advanced Sensor and Energy Harvesting Materials (32 papers), Conducting polymers and applications (15 papers) and Tactile and Sensory Interactions (10 papers). Zihan Wang collaborates with scholars based in China, United States and Singapore. Zihan Wang's co-authors include Wenbo Ding, Chengyue Lu, Xiao Xiao, Bin Cao, Huanyu Cheng, Yingxin Zhu, Li Yang, Xue Chen, Jiyu Wang and Changsheng Wu and has published in prestigious journals such as Advanced Materials, Nature Communications and SHILAP Revista de lepidopterología.

In The Last Decade

Zihan Wang

88 papers receiving 2.3k citations

Hit Papers

An ultrathin rechargeable... 2021 2026 2022 2024 2021 2021 2022 2025 50 100 150 200

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Zihan Wang China 25 1.5k 615 581 473 242 106 2.4k
Vladan Končar France 31 1.9k 1.3× 834 1.4× 1.4k 2.4× 273 0.6× 192 0.8× 129 3.0k
Long Liu China 24 1.4k 0.9× 653 1.1× 432 0.7× 383 0.8× 389 1.6× 80 2.5k
Chong Hou China 22 1.2k 0.8× 922 1.5× 462 0.8× 272 0.6× 210 0.9× 64 2.5k
Wenbo Ding China 23 1.2k 0.8× 833 1.4× 566 1.0× 412 0.9× 295 1.2× 91 2.1k
Wan Shou United States 27 1.4k 0.9× 806 1.3× 646 1.1× 289 0.6× 465 1.9× 65 2.6k
Zhaoqun Du China 22 1.1k 0.7× 227 0.4× 1.1k 1.9× 324 0.7× 491 2.0× 112 1.9k
Lihua Zhang China 19 890 0.6× 562 0.9× 344 0.6× 312 0.7× 298 1.2× 162 2.4k
Shengyang Chen China 22 805 0.5× 409 0.7× 379 0.7× 114 0.2× 203 0.8× 64 1.8k
Fengxin Sun China 22 1.0k 0.7× 179 0.3× 734 1.3× 306 0.6× 318 1.3× 115 1.8k
Jingwen Tian China 18 942 0.6× 400 0.7× 627 1.1× 236 0.5× 220 0.9× 113 1.6k

Countries citing papers authored by Zihan Wang

Since Specialization
Citations

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

Fields of papers citing papers by Zihan Wang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Zihan Wang

This figure shows the co-authorship network connecting the top 25 collaborators of Zihan Wang. A scholar is included among the top collaborators of Zihan 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 Zihan Wang. Zihan 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.
Chen, Litong, Zihan Wang, Zihan Wang, et al.. (2025). Application of an electronic tongue combined with meta-learning for rice origin detection. Engineering Applications of Artificial Intelligence. 156. 111174–111174.
2.
Wang, Zihan, Zihan Wang, Jiarong Li, et al.. (2025). Self‐Powered Optical Communication: Opportunities, Challenges and Future Prospects. Advanced Energy Materials. 15(42). 1 indexed citations
3.
Deng, Weili, Tingting Zhou, Zihan Wang, et al.. (2025). Gradient CNT/PMN-PT/PVDF piezoelectric composites for gait monitoring during weight-bearing walking. Nanoscale. 17(30). 17658–17668.
4.
Wang, Zihan, et al.. (2025). An integrated valved microfluidic platform for rapid and simultaneous nucleic acid detection. Lab on a Chip. 26(2). 507–514.
5.
He, Peisheng, Rahul Ganguli, Christine Heera Ahn, et al.. (2025). High-voltage water-scarce hydrogel electrolytes enable mechanically safe stretchable Li-ion batteries. Science Advances. 11(15). eadu3711–eadu3711. 7 indexed citations
7.
Yang, Li, Zihan Wang, Wei Fu, et al.. (2025). Highly sensitive and fast response/recovery ammonia sensor based on PANI/LIG at room temperature. Sensors and Actuators B Chemical. 437. 137710–137710. 3 indexed citations
8.
Wang, Zihan, Shuquan Zhang, Jing Zeng, et al.. (2025). Recent advances in self-powered implantable medical devices: Energy harvesting, conversion and therapeutic applications. SHILAP Revista de lepidopterología. 1(4). 100087–100087. 1 indexed citations
9.
Li, Yang, Zihan Wang, Wei Fu, et al.. (2025). Highly sensitive, room-temperature hydrogen sulfide gas sensor based on tungsten trioxide/laser-induced graphene. Chemical Engineering Journal. 521. 166393–166393. 2 indexed citations
10.
Li, Yang, Anqi Feng, Hui Zhang, et al.. (2025). Laser-induced graphene nanocomposites with molecularly imprinted polymers and Prussian blue for electrochemical sensing of vitamin B6 and glucose. Composites Part B Engineering. 304. 112843–112843.
11.
Wang, Zihan, et al.. (2024). Stretchable Liquid Metal E-Skin for Soft Robot Proprioceptive Vibration Sensing. IEEE Sensors Journal. 24(11). 18327–18335. 6 indexed citations
12.
Xu, Wenhao, Wenping Geng, Zihan Wang, et al.. (2024). Enhancing the electric charge output in LiNbO3-based piezoelectric pressure sensors. RSC Advances. 14(12). 8313–8321. 5 indexed citations
13.
14.
Liu, Ziyun, et al.. (2023). Harnessing fungicide potential of hydrothermal liquefaction water from livestock manure: A new vision of integrated crop-livestock system. Journal of Cleaner Production. 404. 136971–136971. 10 indexed citations
15.
Zhao, Hongfa, Zihan Wang, Xiao Xiao, et al.. (2023). A platypus-inspired electro-mechanosensory finger for remote control and tactile sensing. Nano Energy. 116. 108790–108790. 41 indexed citations
16.
Zhang, Jiyan, et al.. (2023). Flexible piezoelectric sensor based on polyacrylonitrile/MWCNT/MXene composites films for human physiological health detection. Journal of Applied Polymer Science. 141(9). 10 indexed citations
17.
Xie, Zixuan, Zihan Wang, Chengyue Lu, et al.. (2023). A triboelectric gait sensor system for human activity recognition and user identification. Nano Energy. 112. 108473–108473. 41 indexed citations
18.
Qi, Ning, et al.. (2020). Practical demand response potential evaluation of air-conditioning loads for aggregated customers. Energy Reports. 6. 71–81. 18 indexed citations
19.
Wang, Zihan, Neng Gao, Xin Wang, et al.. (2019). HidingGAN: High Capacity Information Hiding with Generative Adversarial Network. Computer Graphics Forum. 38(7). 393–401. 17 indexed citations
20.
Wang, Xinyu, Jie Cao, Qun Hao, et al.. (2018). LBP-Based Edge Detection Method for Depth Images With Low Resolutions. IEEE photonics journal. 11(1). 1–11. 6 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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