代表性学术论文
1. C. Shan, W. Lin*, Z. Wang, X. Pu, W. He, Q. Tang, S. Fu, G. Li, L. Long, H. Guo, J. Sun, A. Liu*, C. Hu*; An inverting Qq TENG to realize the AC mode based on the coupling of triboelectrification and air-breakdown. Energy &Environmental Qq Science, 2021,14, 5395-5405. (中科院一区综合性TOP期刊,IF2021=39.714)
2. C. Shan, W. He, H. Wu, S. Fu, Q. Tang, Z. Wang, Y. Du, J. Wang, H. Guo*, C. Hu*; A High-Performance bidirectional direct current TENG by triboelectrification of Two dielectrics and Local Corona Discharge. Advanced Energy Materials, 2022, 12, 2200963. (中科院一区综合性TOP期刊,IF2022=29.8)
3. C. Shan, W. He, H. Wu, S. Fu, K. Li, A. Liu, Y. Du, J. Wang, Q. Mu, B. Liu, Y. Xi*, C. Hu*, Dual mode TENG with self‐voltage multiplying circuit for blue energy harvesting and water wave monitoring. Advanced Functional Materials, 2023, 2305768. (中科院一区自然指数期刊,IF2023=19.978)
4. C. Shan, K. Li, H. Wu, S. Fu, A. Liu, J. Wang, X. Zhang, B. Liu, X. Wang*, C. Hu*; Ternary Electrification for Efficient Q Charge Accumulation and Synergetic Charge Collection, Advanced Functional Materials, 2023, 2310332. (中科院 一区自然指数期刊,IF2023=19.978)
15. C. Shan, K. Li, Y. Cheng*, C. Hu*; Harvesting Environment Mechanical Energy by Direct Current Triboelectric qNanogenerators, Nano-Micro Letters, 2023, 15, 1, 127. (中科院 一区,IF2023=26.6)
6. C. Shan, W. He*, H. Wu, S. Fu, G. Li, Y. Du, J. Wang, Q. Mu, H. Guo. B. Liu, C. Hu*; Efficiently utilizing shallow and deep trapped charges on polyester fiber cloth surface by double working mode design for high output and durability TENG, Nano Energy, 2022, 104, 107968. (中科院 一区,IF2022=17.6)
7. K. Li, C. Shan*, S. Fu, H. Wu, W. He, J. Wang, G. Li, Q. Mu, S. Du, Q. Zhao, H. Guo*, C. Hu*; High Efficiency Triboelectric Charge Capture for High Output Direct Current Electricity, Energy &Environmental Science, 2024,17, 580-590.( 通讯作者,共同第一作者,中科院 一区,IF2023=32.5)
8. W. He, C. Shan, H. Wu, S. Fu, Q. Li, G. Li, X. Zhang, Y. Du, J. Wang, X. Wang & C. Hu*. Capturing Dissipation Charge in Charge Space Accumulation Area for Enhancing Output Performance of Sliding Triboelectric Nanogenerator. Advanced Energy Materials, 2022, 12, 2201454. (共同第一作者,中科院 一区,IF2022=29.8)
9. B. Liu, K. Li, X. Zhou, C. Shan*, X. Pu, C. Hu*; Improving contact efficiency by novel powder forming film for high output DC-triboelectric nanogenerator, Nano Energy, 2024, 130, 110094. (通讯作者,中科院 一区,IF2022=17.6)
Q10. C. Shan, M. Zhao*, D. Jiang, Q. Li, M. Li, X. Zhou, Y. Duan, N. Wang, R. Deng; Improved responsivity performance of Q qZnO film ultraviolet photodetectors by vertical arrays ZnO nanowires with light trapping effect. Nanotechnology, 2019,30, Q305703. (IF2019=3.551)
11. C. Shan, M. Zhao*, D. Jiang*, J. Sun, Y. Duan, Q. Li, M. Li, X. Zhou, N. Wang, X. Fei ; Improved responsivity of whighly w reproducible performance ZnO thin film flexible UV photodetectors by piezo-phototronic effect. Journal of Materials Science: Materials in Electronics, 2019,30, 15198–15205. (IF2019=2.2)
主要知识产权
[1] 胡陈果、刘文林、单春才、刘安平;基于摩擦电效应和空气击穿耦合的逆变摩擦发电机[P]. 中国,发明专利;专利号:ZL202110906008.4;授权日期:2022.11.09。
研究方向及兴趣