Feifan Sheng

2.1k total citations · 2 hit papers
23 papers, 1.8k citations indexed

About

Feifan Sheng is a scholar working on Biomedical Engineering, Polymers and Plastics and Cognitive Neuroscience. According to data from OpenAlex, Feifan Sheng has authored 23 papers receiving a total of 1.8k indexed citations (citations by other indexed papers that have themselves been cited), including 20 papers in Biomedical Engineering, 12 papers in Polymers and Plastics and 10 papers in Cognitive Neuroscience. Recurrent topics in Feifan Sheng's work include Advanced Sensor and Energy Harvesting Materials (17 papers), Conducting polymers and applications (12 papers) and Tactile and Sensory Interactions (10 papers). Feifan Sheng is often cited by papers focused on Advanced Sensor and Energy Harvesting Materials (17 papers), Conducting polymers and applications (12 papers) and Tactile and Sensory Interactions (10 papers). Feifan Sheng collaborates with scholars based in China, United States and Italy. Feifan Sheng's co-authors include Zhong Lin Wang, Kai Dong, Renwei Cheng, Chuan Ning, Jia Yi, Yihan Zhang, Cuiying Ye, Chuanhui Wei, Yang Jiang and Shen Shen and has published in prestigious journals such as Advanced Materials, SHILAP Revista de lepidopterología and ACS Nano.

In The Last Decade

Feifan Sheng

22 papers receiving 1.7k citations

Hit Papers

Helical Fiber Strain Sensors Based on Triboelectric Nanog... 2022 2026 2023 2024 2022 2023 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
Feifan Sheng China 19 1.6k 955 505 354 290 23 1.8k
Shuang Yang Kuang China 18 1.5k 1.0× 962 1.0× 441 0.9× 412 1.2× 292 1.0× 21 1.7k
Cuiying Ye China 12 1.7k 1.1× 1.1k 1.1× 549 1.1× 393 1.1× 310 1.1× 18 1.9k
Yang Jiang China 14 1.7k 1.1× 1.1k 1.1× 573 1.1× 460 1.3× 321 1.1× 36 2.0k
Jia Yi China 19 1.9k 1.2× 1.2k 1.3× 656 1.3× 520 1.5× 327 1.1× 44 2.2k
Hua Yang Li China 19 1.6k 1.0× 974 1.0× 512 1.0× 553 1.6× 300 1.0× 21 1.8k
Song Zhang China 23 1.3k 0.8× 738 0.8× 279 0.6× 312 0.9× 275 0.9× 36 1.6k
Zi Hao Guo China 24 1.6k 1.0× 1.1k 1.1× 411 0.8× 789 2.2× 432 1.5× 36 2.3k
Seungbae Son South Korea 8 1.5k 0.9× 847 0.9× 502 1.0× 556 1.6× 142 0.5× 10 1.6k
Young‐Eun Shin South Korea 17 1.3k 0.8× 660 0.7× 395 0.8× 502 1.4× 304 1.0× 21 1.6k

Countries citing papers authored by Feifan Sheng

Since Specialization
Citations

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

Fields of papers citing papers by Feifan Sheng

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Feifan Sheng

This figure shows the co-authorship network connecting the top 25 collaborators of Feifan Sheng. A scholar is included among the top collaborators of Feifan Sheng 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 Feifan Sheng. Feifan Sheng 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.
Sheng, Feifan, et al.. (2024). Flourishing electronic textiles towards pervasive, personalized and intelligent healthcare. 4(1). 23 indexed citations
2.
Cheng, Renwei, Chuanhui Wei, Erming Su, et al.. (2023). All‐Fabric Direct‐Current Triboelectric Nanogenerators Based on the Tribovoltaic Effect as Power Textiles. Advanced Energy Materials. 13(29). 44 indexed citations
3.
Ning, Chuan, Chuanhui Wei, Feifan Sheng, et al.. (2023). Scalable one-step wet-spinning of triboelectric fibers for large-area power and sensing textiles. Nano Research. 16(5). 7518–7526. 42 indexed citations
4.
Sheng, Feifan, Bo Zhang, Renwei Cheng, et al.. (2023). Wearable energy harvesting-storage hybrid textiles as on-body self-charging power systems. SHILAP Revista de lepidopterología. 2. e9120079–e9120079. 43 indexed citations
5.
Wei, Chuanhui, Renwei Cheng, Chuan Ning, et al.. (2023). A Self‐Powered Body Motion Sensing Network Integrated with Multiple Triboelectric Fabrics for Biometric Gait Recognition and Auxiliary Rehabilitation Training. Advanced Functional Materials. 33(35). 146 indexed citations breakdown →
6.
Ning, Chuan, Renwei Cheng, Yang Jiang, et al.. (2022). Helical Fiber Strain Sensors Based on Triboelectric Nanogenerators for Self-Powered Human Respiratory Monitoring. ACS Nano. 16(2). 2811–2821. 210 indexed citations breakdown →
7.
Cheng, Renwei, Chuan Ning, Pengfei Chen, et al.. (2022). Enhanced Output of On‐Body Direct‐Current Power Textiles by Efficient Energy Management for Sustainable Working of Mobile Electronics. Advanced Energy Materials. 12(29). 38 indexed citations
9.
Shen, Shen, Jia Yi, Renwei Cheng, et al.. (2021). Electromagnetic Shielding Triboelectric Yarns for Human–Machine Interacting. Advanced Electronic Materials. 8(2). 17 indexed citations
10.
Sheng, Feifan, Jia Yi, Shen Shen, et al.. (2021). Self-Powered Smart Arm Training Band Sensor Based on Extremely Stretchable Hydrogel Conductors. ACS Applied Materials & Interfaces. 13(37). 44868–44877. 70 indexed citations
11.
Ning, Chuan, Kai Dong, Wenchao Gao, et al.. (2021). Dual-mode thermal-regulating and self-powered pressure sensing hybrid smart fibers. Chemical Engineering Journal. 420. 129650–129650. 44 indexed citations
12.
Shen, Shen, Liyun Ma, Feifan Sheng, et al.. (2021). High-Efficiency Wastewater Purification System Based on Coupled Photoelectric–Catalytic Action Provided by Triboelectric Nanogenerator. Nano-Micro Letters. 13(1). 194–194. 56 indexed citations
13.
Ma, Liyun, Ronghui Wu, Aniruddha Patil, et al.. (2021). Acid and Alkali‐Resistant Textile Triboelectric Nanogenerator as a Smart Protective Suit for Liquid Energy Harvesting and Self‐Powered Monitoring in High‐Risk Environments. Advanced Functional Materials. 31(35). 84 indexed citations
14.
Wang, Yizhe, Lingxiang Huang, Sheng Huang, Shoudao Huang, & Feifan Sheng. (2021). Parameters Identification of IPMSM Based on Deadbeat Predictive Current Control. 628–633.
15.
Ye, Cuiying, Di Liu, Peng Xiao, et al.. (2021). A Hydrophobic Self-Repairing Power Textile for Effective Water Droplet Energy Harvesting. ACS Nano. 15(11). 18172–18181. 142 indexed citations
16.
Ma, Liyun, Ronghui Wu, Sai Liu, et al.. (2020). A Machine‐Fabricated 3D Honeycomb‐Structured Flame‐Retardant Triboelectric Fabric for Fire Escape and Rescue. Advanced Materials. 32(38). e2003897–e2003897. 173 indexed citations
17.
Ning, Chuan, Kai Dong, Renwei Cheng, et al.. (2020). Flexible and Stretchable Fiber‐Shaped Triboelectric Nanogenerators for Biomechanical Monitoring and Human‐Interactive Sensing. Advanced Functional Materials. 31(4). 236 indexed citations
18.
Han, Ting, Shaozhen Wang, Feifan Sheng, et al.. (2020). Target triggered ultrasensitive electrochemical polychlorinated biphenyl aptasensor based on DNA microcapsules and nonlinear hybridization chain reaction. The Analyst. 145(10). 3598–3604. 20 indexed citations
19.
Shi, Dongmin, Feifan Sheng, Xiaojun Zhang, & Guangfeng Wang. (2018). Gold nanoparticle aggregation: Colorimetric detection of the interactions between avidin and biotin. Talanta. 185. 106–112. 26 indexed citations
20.
Sheng, Feifan, Xiaojun Zhang, & Guangfeng Wang. (2016). Novel ultrasensitive homogeneous electrochemical aptasensor based on dsDNA-templated copper nanoparticles for the detection of ractopamine. Journal of Materials Chemistry B. 5(1). 53–61. 18 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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