[2] 2008.12-2010.11;美国加州大学洛杉矶分校(University of California, Los Angeles, UCLA),化学与生物分子工程系(Department of Chemical and Biomolecular Engineering),纳米材料领域著名学者卢云峰(Yunfeng Lu)教授课题组参加国家公派;
[30] Chao Hu, Zeyu Li, Yalong Wang, Jiachen Gao, Kun Dai (通讯作者), Guoqiang Zheng, Chuntai Liu, Changyu Shen, Haixiang Song, Zhanhu Guo. Comparative assessment of the strain-sensing behaviors of polylactic acid cocomposites: reduced graphene oxide or carbon nanotubes. Journal of Materials Chemistry C, 2017, DOI: 10.1039/c6tc05261d.(中科院一区,IF=5.07)
[29] Xiaohan Cao, Xiangdong Wei, Guojie Li, Chao Hu, Kun Dai (通讯作者), Jiang Guo, Guoqiang Zheng, Chuntai Liu, Changyu Shen, Zhanhu Guo. Strain sensing behaviors of epoxy nanocomposites with carbon nanotubes under cyclic deformation. Polymer, 2017, 112: 1-9.
[28] Yanjun Zheng, Yilong Li, Zeyu Li, Yalong Wang, Kun Dai (通讯作者), Guoqiang Zheng, Chuntai Liu, Changyu Shen. The effect of filler dimensionality on the electromechanical performance of polydimethylsiloxane based conductive nanocomposites for flexible strain sensors. Composites Science and Technology, 2017,139: 64-73.
[27] Hu Liu, Mengyao Dong, Wenju Huang, Jiachen Gao, Kun Dai (通讯作者), Jiang Guo, Guoqiang Zheng, Chuntai Liu, Changyu Shen, Zhanhu Guo. Lightweight Conductive Graphene/Thermoplastic Polyurethane Foams with Ultrahigh Compressibility for Piezoresistive Sensing. Journal of Materials Chemistry C, 2017,5:73-83.(中科院一区,IF=5.07,封面文章)
2016年研究论文:
[26] Hu Liu, Jiachen Gao, Wenju Huang, Kun Dai (通讯作者), Guoqiang Zheng, Chuntai Liu, Changyu Shen, Jiang Guo, Xingru Yan, Zhanhu Guo. Electrically Conductive Strain Sensing Polyurethane Nanocomposites with Synergistic Carbon Nanotubes and Graphene Bifillers. Nanoscale, 2016, 8: 12977-12989. (中科院一区,IF=7.76)
[25]Hu Liu, Wenju Huang, Xinru Yang, Kun Dai (通讯作者), Guoqiang Zheng, Chuntai Liu,Changyu Shen, Xingru Yan, Jiang Guo, Zhanhu Guo. Organic vapor sensing behaviors of conductive thermoplastic polyurethane-graphene nanocomposites. Journal of Materials Chemistry C, 2016, 4: 4459-4469. (中科院一区,IF=5.07)
[24] Hu Liu, Yilong Li, Kun Dai (通讯作者), Guoqiang Zheng, Chuntai Liu, Changyu Shen, Xingru Yan, Jiang Guo, Zhanhu Guo. Electrically conductive thermoplastic elastomer nanocomposites at ultralow graphene loading levels for strain sensor applications. Journal of Materials Chemisry C, 2016, 4: 157-166. (中科院一区,IF=5.07,ESI Highly Cited Paper)
[23] Hu Liu, Wenju Huang, Jiachen Gao, Kun Dai (通讯作者), Guoqiang Zheng, Chuntai Liu, Changyu Shen, Xingru Yan, Jiang Guo, Zhanhu Guo. Piezoresistive behavior of porous carbon nanotube-thermoplastic polyurethane conductive nanocomposites with ultrahigh compressibility. Applied Physics Letters 2016, 108: 011904.
[22] Yan Lan, Hu Liu, Xiaohan Cao, Shuaiguo Zhao, Kun Dai (通讯作者), Xingru Yan, Guoqiang Zheng, Chuntai Liu, Changyu Shen, Zhanhu Guo. Electrically conductive thermoplastic polyurethane/polypropylene nanocomposites with selectively distributed graphene. Polymer, 2016, 97:11-19.
[21] Zhuoyan Xu, Ning Wang, Ning Li, Guoqiang Zheng, Kun Dai (通讯作者), Chuntai Liu, Changyu Shen. Liquid sensing behaviors of conductive polypropylene composites containing hybrid fillers of carbon fiber and carbon black. Composites Part B, 2016, 94:45-51.
[20] Guojie Li,Chao Hu,Wei Zhai, Shuaiguo Zhao, Guoqiang Zheng, Kun Dai (通讯作者), Chuntai Liu, Changyu Shen. Particle size induced tunable positive temperature coefficient characteristics in electrically conductive carbon nanotubes/polypropylene composite. Materials Letters, 2016, 182: 314-317.
[19] Ning Wang, Zhuoyan Xu, Yingying Qu, Guoqiang Zheng, Kun Dai (通讯作者), Chuntai Liu, Changyu Shen. Liquid-sensing behaviors of carbon black/polyamide 6/high-density polyethylene composite containing ultrafine conductive electrospun fibrous network. Colloid and Polymer Science, 2016, 294:1343-1350.
2015年研究论文:
[18] Yilong Li, Hu Liu, Kun Dai(通讯作者), Guoqiang Zheng, Chuntai Liu, , Jingbo Chen, Changyu Shen. Tuning of vapor sensing behaviors of eco-friendly conductive polymer composites utilizing ramie fiber. Sensors and Actuators B: Chemical, 2015, 221(31): 1279-1289. (中科院一区,IF=4.76)
[17] Xiaohan Cao, Yan Lan, Yue Wei, Guoqiang Zheng, Kun Dai(通讯作者), Chuntai Liu, , Changyu Shen. Tunable resistivity-temperature characteristics of an electrically conductive multi-walled carbon nanotubes/epoxy composite. Materials Letters, 2015, 159(15): 276-279.
[16] Yilong Li, Kun Dai(通讯作者), Junhui Zhao, Ning Li, Guoqiang Zheng, Chuntai Liu, Jingbo Chen, Changyu Shen. Liquid-sensing behaviors of carbon black/polypropylene and carbon nanotubes/polypropylene composites: A comparative study. Polymer Composites, 2015, 36(2):205-213.
2014年研究论文:
[15] Yue Wei, Zeyu Li, Xianhu Liu, Kun Dai(通讯作者), Guoqiang Zheng, Chuntai Liu, Jingbo Chen, Changyu Shen. Temperature-resistivity characteristics of a segregated conductive CB/PP/UHMWPE composite. Colloid and Polymer Science, 2014, 292(11):2891-2898.
[14] Shuaiguo Zhao, Wei Zhai, Ning Li, Kun Dai(通讯作者), Guoqiang Zheng, Chuntai Liu, Jingbo Chen, Changyu Shen. Liquid sensing properties of carbon black/polypropylene composite with a segregated conductive network. Sensors & Actuators: A. Physical, 2014, 217:13-20.
[13] Shuaiguo Zhao, Huijie Zhao, Guojie Li, Kun Dai(通讯作者), Guoqiang Zheng, Chuntai Liu, Changyu Shen. Synergistic effect of carbon fibers on the conductive properties of a segregated carbon black/polypropylene composite. Material Letters, 2014, 129:72-75.
[12] Yingying Qu, Wenbo Zhang, Kun Dai(通讯作者), Guoqiang Zheng,Chuntai Liu, Jingbo Chen,Changyu Shen. Tuning of the PTC and NTC effects of conductive CB/PA6/HDPE composite utilizing an electrically superfine electrospun network. Materials Letters, 2014, 132:48-51.
[11] Yingying Qu, Kun Dai(通讯作者), Junhui Zhao, Guoqiang Zheng, Chuntai Liu, Jingbo Chen, Changyu Shen. The strain-sensing behaviors of carbon black/polypropylene and carbon nanotubes/polypropylene conductive composites prepared by the vacuum-assisted hot compression. Colloid and Polymer Science, 2014, 292:945-951.
[9] Kun Dai, Shuaiguo Zhao, Wei Zhai, Guoqiang Zheng, Chuntai Liu, Jingbo Chen, Changyu Shen. Tuning of liquid sensing performance of conductive carbon black (CB)/polypropylene (PP) composite utilizing a segregated structure. Composites Part A, 2013, 55: 11-18.
[8] Junhui Zhao, Kun Dai(通讯作者), Chenggang Liu, Guoqiang Zheng, Bo Wang, Chuntai Liu, Jingbo Chen, Changyu Shen. A comparison between strain sensing behaviors of carbon black/polypropylene and carbon nanotubes/polypropylene electrically conductive composites. Composites Part A, 2013,48: 129-136.
[7] Ke Li, Kun Dai(通讯作者), Xiangbin Xu, Guoqiang Zheng, Chuntai Liu, Jingbo Chen, Changyu Shen. Organic vapor sensing behaviors of carbon black/poly (lactic acid) conductive biopolymer composite. Colloid and Polymer Science, 2013, 291, 2871-2878.
[6] Junhui Zhao, Kun Dai(通讯作者), Xiangbin Xu, Guoqiang Zheng, Chuntai Liu, Jingbo Chen. Comparative study of strain sensing behaviors of carbon black/polypropylene and carbon nanotubes/polypropylene with different tensile speeds. Polymer-Plastics Technology and Engineering, 2013, 52:1303-1307.
2012年以前研究论文:
[5] Kun Dai, Xiang-Bin Xu, Zhong-Ming Li. Electrically conductive carbon black (CB) filled in situ microfibrillar poly(ethylene terephthalate) (PET)/polyethylene (PE) composite with a selective CB distribution. Polymer, 2007, 48(3): 849-859. (Cited times: 108)
[4] Kun Dai, Zhong-Ming Li, Xiang-Bin Xu. Electrically conductive in-situ microfibrillar composite with a selective carbon black distribution: An unusual resistivity-temperature behavior upon cooling. Polymer, 2008, 49(4): 1037-1048. (Cited times: 39)
[3] Kun Dai, Yi-Chuan Zhang, Jian-Hua Tang, Xu Ji, Zhong-Ming Li. Organic liquid stimuli-response behaviors of electrically conductive microfibrillar composite with a selective conductive component distribution. Journal of Applied Polymer Science, 2012, 124: 4466-4474.
[2] Kun Dai, Yi-Chuan Zhang, Jian-Hua Tang, Xu Ji, Zhong-Ming Li. Anomalous attenuation and structural origin of positive temperature coefficient (PTC) effect in a carbon black (CB)/poly(ethylene terephthalate) (PET)/polyethylene (PE) conductive microfibrillar polymer composite with a preferential CB distribution. Journal of Applied Polymer Science, 2012, 125:E561-E570.