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李召岭 副教授

东华大学

纺织学院

个人履历

东华大学纺织工程专业博士毕业,现任纺织学院副教授、硕士生导师。中国纺织工程学会会员,中国化学会会员,中国纺织优秀博士学位论文获得者。曾在美国佐治亚理工学院交流访问19个月,主要从事天然纤维,纳米发电机,智能电子皮肤,智能可穿戴,吸波材料等方向研究。近五年在Energy Environmental Science, Advanced Materials, Nano Energy, ACS Nano, Nature Communications, AdvancedFunctional Materials等国际著名期刊发表高水平SCI论文32篇,IF在4.0以上的有19篇,IF在10. 以上的有14篇,单篇最高IF为29.52,其中ESI高被引论文7篇,一区论文18篇。截止2017年12月,研究成果已被引用800余次(Google Scholar),单篇最高引用138次,H-index为14,申请中国发明专利18个,其中已授权6个。很多研究成果受到国内外同行的广泛关注,产生积极社会反响。担任Nano Energy, Advanced Energy Materials, AdvancedFunctional Materials, Cellulose, Textile Research Journal等十几个SCI期刊的特约审稿人。

学习工作经历:

ll2016.10至今东华大学纺织学院副教授、硕导

ll2013.11-2015. 6美国佐治亚理工学院材料学博士联培

ll2012.9-2016.3东华大学纺织工程工学博士

ll2008.9-2011.6山东理工大学物理化学理学硕士


研究方向

1)摩擦纳米发电机与纳米能源

2)自驱动可穿戴智能纺织品 

3)智能电子皮肤/柔性传感器 

4)高效宽频纤维基吸波材料            

                            

研究成果

  部分SCI论文:

  1. Z. Li, J. Chen, J. Yang, Y. Su, X. Fan, Y. Wu, C. Yu, Z. L. Wang*. β-cyclodextrin enhanced triboelectrification for self-powered phenol detection and electrochemical degradation. Energy & Environmental Science.2015, 8, 887–896.(IF=29.52)

  2. Z. Li, J. Chen, H. Guo, X. Fan, Z. Wen, M.-H. Yeh, C. Yu, X. Cao*, Z. L. Wang*. Triboelectrification enabled self-powered detection and removal of heavy metal ions in wastewater, Advanced Materials.2016, 28, 2983-2991.(IF=19.79)

  3. Z. Li, J. Chen, J. Zhou, L. Zheng, K. C. Pradel, X. Fan,H. Guo, Z. Wen, M.-H. Yeh, Chongwen Yu*, Zhong Lin Wang*. High-efficiency ramie fiber degumming and self-powered degumming wastewater treatment using triboelectric nanogenerator. Nano Energy.2016, 22, 548-557. (IF=12.34)

  4. Z. Li, J. Shen, I. Abdalla, J. Yu, B. Ding*. Nanofibrous Membrane Constructed Wearable Triboelectric Nanogenerator for High Performance Biomechanical Energy Harvesting. Nano Energy. 2017, 36, 341-348.(IF=12.34)

  5. J. Shen, Z. Li(first co-author), J. Yu, B. Ding*. Humidity-Resisting Triboelectric Nanogenerator for High Performance Biomechanical Energy Harvesting. Nano Energy. 2017, 40, 282-288. (IF=12.343)

  6. J. Chen, J. Yang, Z. Li(first co-author), X. Fan, Y. Zi, Q. Jing, H. Guo,Z. Wen, K. C. Pradel, S. Niu, Z. L. Wang*. Networks of Triboelectric Nanogenerators for Harvesting Water Wave Energy: A Potential Approach toward Blue Energy. ACS Nano. 2015, 9, 3324–3331.(IF=13.94)

  7. Z. Li, C. Yu*. The Effect of Oxidation-reduction Potential on the Degumming of Ramie Fibers with Hydrogen Peroxide. Journal of the Textile Institute.2015, 106, 1251-1261.(IF=1.01)

  8. Z. Li, C. Yu*. Effect of Peroxide and Softness Modification on Properties of Ramie Fiber. Fibers and Polymers.2014, 15, 2105-2111. (IF=1.11)

  9. Z. Li, C. Meng, C. Yu*. Analysis of oxidized cellulose introduced into ramie fiber by oxidation degumming. Textile Research Journal. 2015, 85, 2125-2135. (IF=1.44)

  10. Z. Li, C. Meng, J. Zhou,Z. Li, J. Ding, F. Liu, C. Yu*. Characterization and control of oxidized cellulose in ramie fibers during oxidative degumming. Textile Research Journal.2017, 87, 1828-1840. (IF=1.44)

  11. J. Yang, J. Chen, Y. Su, Q. Jing, Z. Li, F. Yi, X. Wen, Z. Wang, Z. L. Wang*. Eardrum-Inspired Active Sensors for Self-Powered Cardiovascular System Characterization and Throat-Attached Anti-Interference Voice Recognition. Advanced Materials.2015, 27, 1316–1326.(IF=19.79)

  12. X. Fan, J. Chen, J. Yang, P. Bai,Z. Li, Z. L. Wang*. Ultrathin, Rollable, Paper-Based Triboelectric Nanogenerator for Acoustic Energy Harvesting and Self-Powered Sound Recording. ACS Nano. 2015,9, 4236–4243. (IF=13.94)

  13. J. Wang, X. Li, Y. Zi, S. Wang, Z. Li, L. Zheng, F. Yi, S. Li, Z. L. Wang*. Flexible fiber-based supercapacitor-triboelectric nanogenerator power system for wearable electronics. Advanced Materials.2015, 27, 4830–4836.(IF=19.79)

  14. Z. Wang, R. Yu, C. Pan,Z. Li, J. Yang, F. Yi, Z. L. Wang*. Light-induced pyroelectric effect as an effective approach for ultrafast UV nanosensing. Nature Communications.2015, 6, 8401. (IF=12.12)

  15. H. Guo, J. Chen, M.-H. Yeh, X. Fan, Z. Wen,Z. Li, L. Lin, C. Hu, Z. L. Wang*. An ultra-robust high performance triboelectric nanogenerator based on charge replenishment. ACS Nano.2015,9, 5577-5584. (IF=13.94)

  16. Z. Wen, J. Chen, M.-H. Yeh, H. Guo, Z. Li, X. Fan, T. Zhang, L. Zhu, Z. L. Wang*. Blow-Driven Triboelectric Nanogenerator as an Active Alcohol Breath Analyzer. Nano Energy. 2015, 16, 38–46.(IF=12.34)

  17. M.-H. Yeh, H. Guo, L. Lin, Z. Wen, Z. Li, C. Hu, Z. L. Wang*. Rolling friction enhanced free-standing triboelectric nanogenerators and its applications in self-powered electrochemical recovery system. Advanced Functional Materials. 2016,26,1054-1062. (IF=12.12)

  18. J. Chen, J. Yang, H. Guo, Z. Li, L. Zheng, Z. Wen, X. Fan, Z. L. Wang*. Automatic Mode Transition Enabled Robust Triboelectric Nanogenerators. ACS Nano. 2015, 9, 12334–12343. (IF=13.94)

热门排行
1
采用电纺丝法制备了前驱体纳米纤维膜,固化的纳米纤维均匀分布。在随后的热解过程中,PVP被碳化成相互连接的3D碳骨架,纳米纤维形态得到了很好的保存。

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