论文、论著 |
1. Qing Yao, Jie Zhang, Kaiyu Wang, Changqian Li, Chenyu Shang, Haiqing Sun, Weiwei Zhang, Tianliang Zhou, Huiling Zhu*, Jianxu Ding*. Controlling screw dislocation evolution towards highly homogeneous quasi-two-dimensional (BA)2(MA)n-1PbnI3n+1 single crystals for high-response photo-detectors, Journal of Materials Chemistry C, 2022, 10:3826-3837. 2. Mengmeng Zhang, Hao Zheng, HuilingZhu*,et al.. Boosting energy and power of Cu-doped NiCo2S4/graphite electrode for high performance supercapacitors, Journal of Alloys and Compounds, 2022, 901: 163633. 3. Meng Zhang , Ruxin Zang , Mengmeng Zhang , Rui Liu , Xuesong Zhu , Xinbo Li , Hongzhi Cui , Huiling Zhu*. Promoting the cyclic and rate performance of Nickel hydroxide with ZnO via electrodeposition for supercapacitor, Journal of Alloys and Compounds, 2022, 911: 164865. 4. Jinglun Chen, Zhenfu Xu, Huiling Zhu*, et al.. An ultrafast supercapacitor built by Co3O4 with tertiary hierarchical architecture, 2020, 174: 109219. 5. Meng Zhang, Hao Zheng, Huiling Zhu*, et al.. Graphene-wrapped MnO2 achieved by ultrasonic-assisted synthesis applicable for hybrid high-energy supercapacitors, Vacuum, 2020, 176: 109315. 6. Hao Zheng, Huiling Zhu*, Meng Zhang, et al.. Seed-induced NiCo2S4 nanosheets with integral ultrafine nanocrystals for efficient supercapacitors, Vacuum, 2020, 182: 109618. 7. Zhenfu Xu, Jinglun Chen, Xue Zhang, Qiang Song, Jie Wu, Lei Ding, Chunzhi Zhang, Huiling Zhu*, Hongzhi Cui*. Template-free preparation of Nitrogen-doped activated carbon with porous architecture for high-performance supercapacitors. Microporous and Mesoporous Materials, 2019, 276: 280-291. 8. Linxiu Han, Zhenfu Xu, Jie Wu, Xueqi Guo, Huiling Zhu*, Hongzhi Cui*. Controllable preparation of graphene/MnO2/Co3O4 for supercapacitors, Journal of Alloys and Compounds, 2017, 729: 1183-1189. 9. Huiling Zhu, Zhenfu Xu, Hongzhi Cui*, Jie Wu. Surface modification as an effective approach toenhance the microwave absorbing properties of hollow carbon spheres, Materials Research Express, 2016, 3: 105020. 10. Huiling Zhu, Qiuxia Han, Jie Wu, et al.. Large scale synthesis of nanoporous BN flake with high surface areas,Journal of Crystal Growth,2016, 434: 19-24. 11. Huiling Zhu, Yujun Bai, Hongzhi Cui*, et al.. Facile synthesis of carbon nanotubes via low temperature pyrolysis of ferrocene. Journal of Crystal Growth, 2014, 404: 44-47. 12. Huiling Zhu, Yujun Bai*, Yongxin Qi, et al.. Large-scale synthesis of hollow highly-graphitic carbon nanospheres by the reaction of AlCl3·6H2O with CaC2. Carbon. 2012, 50: 1871-1878. 13. Huiling Zhu, Yujun Bai*, Rui Liu, et al.. In situ synthesis of one-dimensional MWCNT/SiC porous nanocomposites with excellent microwave absorption properties. Journal of Material Chemistry. 2011, 21:13581-13587. 14. Huiling Zhu, Fudong Han, Ning Lun, et al.. Rapid, low-temperature synthesis of β-SiC nanowires from Si and graphite. Journal of the American Ceramic Society. 2010, 93:2415-2418. 15. Hui-Ling Zhu, Ning Lun, Zheng Zhang, et al.. A catalyst-free method to silicon nanowires at relative low temperature. Journal of Crystal Growth. 2010, 312: 3579-3583. 16. Huiling Zhu, Fudong Han, Jianqiang Bi, et al.. Facile synthesis of Si3N4 nanocrystals via an organic-inorganic reaction route. Journal of the American Ceramic Society. 2009, 92: 535-538. |