¢ 中英文著作 (共8部)
1. 黨智敏 著. 儲能聚合物電介質導論, 科學出版社, 2021.
2. Zhi-Min Dang (Editor). Dielectric Polymer Materials for High-Density Energy Storage, Elsevier, 2018.
3. 周文英,黨智敏,丁小衛 等著. 聚合物基導熱複合材料 國防工業出版社,2017.
4. Zhi-Min Dang, Chapter 6-Polymer Nanocomposites with High Permittivity, in: Nanocrystalline Materials: T heir Synthesis-Structure-Property Relationships and Applications, Edited by S. C. Tjong, Elsevier, 2013.
5. Li-Juan Yin, Zhi-Min Dang, Chapter 8-Nanodielectric Elastomers for Flexible Generators, in: Flexible Energy Conversion and Storage Devices, Edited by Chunyi Zhi and Liming Dai, Wiley-VCH, 2018.
6. Zhi-Min Dang, Ming-Sheng Zheng, Jun-Wei Zha, Chapter 6-Ferroelectric Polymer Materials for Electric Energy Storage, in: Ferroelectric Materials for Energy-Related Applications, Edited by Haitao Wang and James F. Scott, Wiley-VCH, 2018.
7. Minhao Yang, Zhi-Min Dang, Chapter 11-Future prospects: polymer part, Advanced Dielectric Materials for Electrostatic Capacitors, Edited by Qi Li, The Institution of Engineering and Technology, 2020.
8. Jun-Wei Zha, Ming-Sheng Zheng, Wei-Kang Li, George Chen, Zhi-Min Dang, Chapter 5-Polypropylene Insulation Materials for HVDC Cables, in: Polymer Insulation Applied for HVDC Transmission, Edited by Boxue Du, Springer, 2020.
¢ 代表性論文
共發表各類期刊論文350多篇,其中SCI論文300餘篇(其中APL期刊約40篇),SCI他引14000多次(截止2022年01月),個人H指數64。單篇SCI引用超過100次的論文35篇,達到1000左右引用的論文2篇。
Ø 特邀綜述類(Invited Review)
[1] Qi-Kun Feng, Shao-Long Zhong, Jia-Yao Pei, Yu Zhao, Dong-Li Zhang, Di-Fan Liu, Yong-Xin Zhang, Zhi-Min Dang*. Recent progress and future prospects on all-organic polymer dielectrics for energy storage capacitors. Chemical Reviews, 2021, on line.
[2] Xue-Jie Liu, Ming-Sheng Zheng*, George Chen, Zhi-Min Dang*, Jun-Wei Zha*. High-Temperature Polyimide Dielectric Materials for Energy Storage: Theory, Design, Preparation and Properties. Energy & Environmental Science, 2021, online.
[3] Zhi-Min Dang*, Jin-Kai Yuan, Jun-Wei Zha, Tao Zhou, Sheng-Tao Li, Guo-Hua Hu*. Fundamentals, processes and applications of high-permittivity polymer-matrix composites. Progress in Materials Science, 2012, 57, 660-723.
[4] Jing Qin, Li-Juan Yin, Ya-Nan Hao, Shao-Long Zhong, Dong-Li Zhang, Ke Bi, Yong-Xin Zhang, Yu Zhao, Zhi-Min Dang*. Flexible and stretchable capacitive sensors with different microstructures. Advanced Materials, 2021, 33, 2008267.
[5] Zhi-Min Dang*, Jin-Kai Yuan*, Sheng-Hong Yao, Rui-Jin Liao. Flexible nanodielectric materials with high permittivity for power energy storage. Advanced Materials, 2013, 25(44), 6334-6365.
[6] Yong-Xin Zhang, Qi-Kun Feng, Shao-Long Zhong, Jia-Yao Pei, Fang-Yi Chen, Guan-Nan He, Zhi-Min Dang*. Digital twin accelerating development of metallized film capacitor: Key issues, framework design and prospects. Energy Reports, 2021, 7704-7715.
[7] Jun-Wei Zha*, Ming-Sheng Zheng, Ben-Hui Fan, Zhi-Min Dang*. Polymer-based dielectrics with high permittivity for electric energy storage: A Review. Nano Energy, 2021, 89, 106438.
[8] Zhi-Min Dang*, Ming-Sheng Zheng, Jun-Wei Zha*. 1D/2D Carbon Nanomaterial-polymer Dielectric Composites with High Permittivity for Power Energy Storage Application. Small, 2016, 12(13), 1688-1701.
[9] Zhi-Min Dang*, Ming-Sheng Zheng, Peng-Hao Hu, Jun-Wei Zha. Dielectric Polymer Materials for Electrical Energy Storage and Dielectric Physics: A Guide. Journal of Advanced Physics, 2015, 4(4), 302-313.
[10] Zhi-Min Dang*, Jin-Kai Yuan, Jun-Wei Zha, Peng-Hao Hu, Dong-Rui Wang, Zhong-Yang Cheng. High-permittivity polymer nanocomposites: Influence of interface on dielectric properties. Journal of Advanced Dielectrics, 2013, 3, 1330004
[11] Yang Yang, Zhi-Min Dang, Qi Li*, Jiangliang He*. Self-Healing of Electrical Damage in Polymers. Advanced Science, 2020, 7(21), 2002130.
[12] Shao-Long Zhong, Zhi-Min Dang*, Wen-Ying Zhou, Hui-Wu Cai. Past and future on nanodielectrics. IET Nanodielectrics, 2018, 1(1), 41-47.
Ø 科學研究類(Research Article)
[1] Li-Juan Yin, Yu Zhao, Jing Zhu, Minhao Yang, Huichan Zhao, Jiayao Pei, Shao-Long Zhong, Zhi-Min Dang*. Soft, tough, and fast polyacrylate dielectric elastomer for non-magnetic motor. Nature Communications, 2021, 12, 4517.
[2] Jia-Yao Pei, Shao-Long Zhong, Yu Zhao, Li-Juan Yin, Qi-Kun Feng, Lei-Huang, Di-Fan Liu, Yong-Xin Zhang, Zhi-Min Dang*. All-organic dielectric polymer films exhibiting superior electric breakdown strength and discharged energy density by adjusting electrode-dielectric interface with organic nano-interlayer. Energy & Environmental Science, 2021, 14, 5513-5522.
[3] Hanxi Chen, Zhongbin Pan*, Yu Cheng, Xiangping Ding, Jinjun Liu, Qingguo Chi, Minhao Yang*, Zhi-Min Dang*. Ultrahigh charge-discharge efficiency and high energy density of a high-temperature stable sandwich-structured polymer. Journal of Materials Chemistry A, 2022, on line.
[4] Wenying Zhou*, Ting Li, Mengyue Yuan*, Bo Li*, Shaolong Zhong, Zhen Li, Xiangrong Liu, Juanjuan Zhou, Yun Wang, Huiwu Cai, Zhi-Min Dang*. Decoupling of inter-particle polarization and intra-particle polarization in core-shell structured nanocomposites towards improved dielectric performance. Energy Storage Materials, 2021, 42, 1-11.
[5] Biao Liu, Minhao Yang*, Wen-Ying Zhou, Hui-Wu Cai*, Shao-Long Zhong, Ming-Sheng Zheng, Zhi-Min Dang*. High energy density and discharge efficiency polypropylene nanocomposites for potential high-power capacitor. Energy Storage Materials, 2020, 27, 443-452.
[6] Zhi-Min Dang*, Tao Zhou, Sheng-Hong Yao, Jin-Kai Yuan, Jun-Wei Zha, Hong-Tao Song, Jian-Ying Li, Qiang Chen, Wan-Tai Yang, Jinbo Bai. Advanced Calcium Copper Titanate/Polyimide hybrid films with high dielectric permittivity. Advanced Materials, 2009, 21, 2077-2082.
[7] Zhi-Min Dang*, Lan Wang, Yi Yin, Qing Zhang, Qing-Quan Lei. Giant dielectric permittivities in functionalized carbon-nanotube/electroactive-polymer nanocomposites. Advanced Materials, 2007, 19, 852-857.
[8] Zhi-Min Dang*, You-Qin Lin, Hai-Ping Xu, Chang-Yong Shi, Sheng-Tao Li, Jinbo Bai. Fabrication and Dielectric Characterization of Advanced BaTiO3/polyimide nanocomposite films. Advanced Functional Materials, 2008, 18, 1509-1517.
[9] Zhi-Min Dang, Y.-H. Lin, C.-W. Nan*. Novel Ferroelectric Polymer-matrix Composites with a High Dielectric Constant at the Percolation Threshold. Advanced Materials, 2003, 15(19), 1625-1629.
[10] Yi-He Zhang*, Sheng-Guo Lu,Yuan-Qing Li,Zhi-Min Dang, John H. Xin, Shao-Yun Fu, Guang-Tao Li, Rui-Rong Guo, Lai-Feng Li. Novel Silica Tube/Polyimide Composite Films with Variable Low Dielectric Constant. Advanced Materials, 2005, 17(8), 1056-1058.
[11] Yu Yang, Zhan-Sheng Gao, Minhao Yang, Ming-Sheng Zheng*, Dong-Rui Wang, Jun-Wei Zha, Yong-Qiang Wen, Zhi-Min Dang*. Enhanced energy conversion efficiency in the surface modified BaTiO3 nanoparticles/polyurethane nanocomposites for potential dielectric elastomer generators. Nano Energy, 2019, 59, 363-371.
[12] Yue Zhang, Changhai Zhang , Yu Fenga, Tiandong Zhang*, Qingguo Chena, Qingguo Chi*, Lizhu Liua, Guofeng Li, Yang Cuia, Xuan Wang, Zhi-Min Dang*, Qingquan Lei. Excellent energy storage performance and thermal property of polymerbased composite induced by multifunctional one-dimensional nanofibers oriented in-plane direction. Nano Energy, 2019, 56, 138-150.
[13] Ming-Sheng Zheng, Yu-Ting Zheng, Jun-Wei Zha*, Yu Yang, Peng Han, Yong-Qiang Wen, Zhi-Min Dang*. Improved dielectric, tensile and energy storage properties of surface rubberized BaTiO3/polypropylene nanocomposites. Nano Energy, 2018, 48, 144-151.
Ø IEEE Transactions期刊類
[1] Jun-Wei Zha*, Qing-Qing Qin, Zhi-Min Dang. Effect of Multi-Dimensional Zinc Oxide on Electrical Properties of Polypropylene Nanocomposites for HVDC Cables. IEEE Transactions on Dielectrics and Electrical Insulation, 2019, 26, 868-875.
[2] Shao-Long Zhong, Jun-Wei Zha, Zhi-Min Dang*. Prediction on Effective Permittivity of 0-3 Connectivity Particle/Polymer Composites at Low Concentration with Finite Element Method. IEEE Transactions on Dielectrics and Electrical Insulation, 2018, 25(6), 2122-2128.
[3] Jun-Wei Zha*, Jun-Fu Wang, Si-Jiao Wang, Qing-Qing Qin, Zhi-Min Dang. Effect of Modified ZnO on Electrical Properties of PP/SEBS Nanocomposites for HVDC Cables. IEEE Transactions on Dielectrics and Electrical Insulation, 2018, 25(6), 2358-2365.
[4] Jun-Wei Zha*, Hong-Da Yan, Wei-Kang Li, Zhi-Min Dang. Environmentally Friendly Polypropylene/Thermoplastic Elastomer Composites with Modified Graphene Oxide for HVDC Application. IEEE Transactions on Dielectrics and Electrical Insulation, 2018, 25(3), 1088-1094.
[5] Chong Zhang, Jun-Wei Zha*, Hong-Da Yan, Wei-Kang Li, Yong-Qiang Wen, Zhi-Min Dang. Effects of trap density on space charge suppression of block polypropylene/Al2O3 composite under high temperature. IEEE Transactions on Dielectrics and Electrical Insulation, 2018, 25(4), 1293-1299.
[6] Xiang-Yu Li, Jun-Wei Zha, Si-Jiao Wang, Shao-Long Zhong, Chong Zhang, Zhi-Min Dang*. Effect of High-Thermal Conductivity Epoxy Resin on Heat Dissipation Performance of Saturated Reactor. IEEE Transactions on Dielectrics and Electrical Insulation, 2017, 24(6), 3898-3905.
[7] Si-Jiao Wang, Jun-Wei Zha, Wei-Kang Li, Dong-Li Zhang, Zhi-Min Dang*. Sandwiched Structure Effect on Space Charge Characteristics of Alumina/Polyethylene Nanocomposites. IEEE Transactions on Dielectrics and Electrical Insulation, 2017, 24, 1365-1371.
[8] Jun-Wei Zha*, Ying Wang, Wei-Kang Li, Si-Jiao Wang, Zhi-Min Dang. Electrical Properties of Polypropylene/Styrene-Ethylene-Butylene-Styrene Block Copolymer/MgO Nanocomposites. IEEE Transactions on Dielectrics and Electrical Insulation, 2017, 24, 1457-1464.
[9] Zhi-Hui Yang, Peng-Hao Hu, Si-Jiao Wang, Jun-Wei Zha, Zhi-Chong Guo, Zhi-Min Dang*. Effect of Nano-fillers Distribution on the Nonlinear Conductivity and Space Charge Behavior in SiC/PDMS Composites. IEEE Transactions on Dielectrics and Electrical Insulation, 2017, 24, 1735-1742.
[10] Jun-Wei Zha, Qian Liu, Zhi-Min Dang*, George Chen. Tailored Wide-frequency Dielectric Behavior of Polyimide Composite Films with BaxSr1-xTiO3 Perovskites Ceramic Particles. IEEE Transactions on Dielectrics and Electrical Insulation, 2016, 23(4), 2337-2343.
[11] Jun-Wei Zha*, Yun-Hui Wu, Si-Jiao Wang, Dong-Hong Wu, Hong-Da Yan, Zhi-Min Dang*. Improvement of Space Charge Suppression of Polypropylene for Potential Application in HVDC Cables. IEEE Transactions on Dielectrics and Electrical Insulation, 2016, 23(1), 113-120.
[12] Si-Jiao Wang, Jun-Wei Zha, Yun-Hui Wu, Li Ren, Ji Wu, Zhi-Min Dang*. Preparation, Microstructure and Properties of Polyethylene/Alumina nanocomposites for HVDC insulation. IEEE Transactions on Dielectrics and Electrical Insulation, 2015, 22(6), 3350-3356.
[13] Zhi-Min Dang*, Yue Yu, Jun-Wei Zha, Tao Zhou, Hong-Tao Song, Sheng-Tao Li. Microstructure and Dielectric Characterization of Micro-Nanosize Cofilled Composite Films with High Dielectric Permittivity. IEEE Transactions on Dielectrics and Electrical Insulation, 2011, 18(5), 1518-1525.
[14] Dongrui Wang, Meiyan Huang, Jun-Wei Zha, Jun Zhao, Zhi-Min Dang*, Zhongyang Cheng. Dielectric Properties of Polystyrene Based Composites Filled with Core-Shell BaTiO3/Polystyrene Hybrid Nanoparticles. IEEE Transactions on Dielectrics and Electrical Insulation, 2014, 21, 1438-1445.
[15] Jun-Wei Zha, Wei-kang Li, Yan-Hui Zhu, Zhi-Min Dang*, George Chen. Effect of Micro-Si3N4–nano-Al2O3 cofilled Particles on Thermal Conductivity, Dielectric and Mechanical Properties of Silicone Rubber Composites. IEEE Transactions on Dielectrics and Electrical Insulation, 2014, 21, 1989-1996.
[16] Jun-Wei Zha, Zhi-Min Dang*, Kai Zhao, Xiao-Quan Zheng, Sheng-Tao Li. Prominent nonlinear electrical conduction characteristic in T-ZnOw/PTFE composites with low threshold field. IEEE Transactions on Dielectrics and Electrical Insulation, 2012, 19(2), 567-573.
[17] Jun-Wei Zha, Zhi-Min Dang*, Tai Yang, Tao Zhou, Hong-Tao Song, Sheng-Tao Li. Advanced dielectric properties of BaTiO3/polyvinylidene-fluoride nanocomposites with sandwich multi-layer structure. IEEE Transactions on Dielectrics and Electrical Insulation, 2012, 19, 1312-1317.
[18] Hong-Tao Song, Zhi-Min Dang*, Jing Lv, Sheng-Hong Yao, Jun-Wei Zha, Yi Yin. Enhanced Electrical Properies in percolative Low-density polyethylene/Carbon Nanotubes Nanocomposites. IEEE Transactions on Dielectrics and Electrical Insulation, 2010, 17(3), 645-652.
¢ 授權專利
1. 黨智敏,尹麗娟,裴家耀,鐘少龍,張冬麗. 一種丙烯酸酯介電彈性體及其制備方法. 授權年份2021年,專利号ZL202011285609.X.
2. 黨智敏,張冬麗,王思蛟. 環氧樹脂複合材料及其制備方法. 授權年份2021年,專利号ZL202010824049.4.
3. 黨智敏, 鄭明勝. 一種介電薄膜及其制備方法和薄膜電容器. 授權年份2021年,專利号 ZL202010199151.X.
4. 黨智敏. 以橡膠組份添加制備高擊穿和高儲能密度複合材料薄膜的方法. 授權年份2021年,專利号 ZL201710928035.5.
5. 黨智敏,鄭明勝,張翀,邢照亮,戴熙瀛,張翔宇. 一種複合材料及其制備方法和應用. 授權年份2021年,專利号ZL202010199051.7.
6. 黨智敏. 一種三明治結構高儲能密度聚合物基介電複合材料及制備方法. 授權年份2020年,專利号ZL201710928412.5.
7. 查俊偉,李貞,黨智敏. 一種具有駐極體效應的絲素蛋白纖維膜及其應用. 授權年份2020年,專利号ZL201810623865.1.
8. 查俊偉,黃娜,黨智敏. 一種三層結構的全固态聚合物電解質膜的制備方法. 授權年份2019年,專利号ZL201510958722.2.
9. 王東瑞,馬冬敏,劉妹靜,黨智敏. 一種陽離子聚電解質的制造方法及在超級電容器中的應用. 授權年份2018年,專利号ZL201510441347.4.
10. 黨智敏,梁濤,查俊偉. 一種基于超長碲微米線的柔性應變傳感器. 授權年份2017年,專利号ZL201410313150.8.
11. 黨智敏,闫轟達,查俊偉. 可回收聚丙烯/SEBS/氧化石墨烯電纜料的制備方法. 授權年份2017年,專利号ZL201510930915.7.
12. 黨智敏,張玲,王東瑞. 一種充氣預形變的電機械性能測試裝置及測試方法. 授權年份2016年,專利号ZL201410373009.7.
13. 黨智敏,周濤,查俊偉. 一種含有改性石墨烯高介電常數三相複合材料及制備方法. 授權年份2014年,專利号ZL201210145040.6.
14. 黨智敏,白曉飛,查俊偉. 一種埋入式電容器及其制備方法. 授權年份2014年,專利号ZL201210163953.0.
15. 黨智敏,趙航,查俊偉. 一種高驅動敏感度矽橡膠基介電彈性體複合材料及其制備方法. 授權年份2013年,專利号ZL201210163387.3.
16. 黨智敏,喻玥. 一種微納共填充高介電常數柔性複合薄膜的制備. 授權年份2013年,專利号ZL201010123331.6.
17. 黨智敏,孟興,查俊偉,周濤. 高儲能聚合物納米管電容器陣列的制備方法. 授權年份2013年,專利号ZL201210153626.7.
18. 黨智敏,李維康. 一種高PTC強度和穩定性的聚合物基複合材料及其制備方法. 授權年份2012年,專利号ZL201010177645.4.
19. 謝丹,武潇,任天令,黨智敏. 聚合物複合材嵌入式微電容及其制備方法. 授權年份2012年,專利号ZL201010232566.9.
20. 黨智敏,楊泰,查俊偉. 一種多層結構的聚合物基電介質複合材料及其制備方法. 授權年份2011年,專利号ZL200910083691.5.
21. 南策文,黨智敏,沈洋. 高介電常數的三元複合材料及其制備方法. 授權年份2007年,專利号ZL02131239.7.
22. 南策文,黨智敏,沈洋. 含有碳納米管的高介電複合材料及其制備方法. 授權年份2005年,專利号ZL03104776.9.