Guo Baochun | Department Of Polymer Materials And Engineering South China University Of Technology
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関連著者
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Guo Baochun
Department Of Polymer Materials And Engineering South China University Of Technology
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GUO Baochun
Department of Polymer Materials and Engineering, South China University of Technology
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JIA Demin
Department of Polymer Materials and Engineering, South China University of Technology
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Jia Demin
Department Of Polymer Materials And Engineering South China University Of Technology
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Liu Mingxian
Department Of Polymer Materials And Engineering South China University Of Technology
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DU Mingliang
Department of Polymer Materials and Engineering, South China University of Technology
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Du Mingliang
Department Of Polymer Materials And Engineering South China University Of Technology
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Lei Yanda
Department Of Polymer Materials And Engineering South China University Of Technology
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Chen Feng
Department Of Applied Physics And Chemistry The University Of Electro-communications
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Chen Weiwei
Department Of Polymer Materials And Engineering South China University Of Technology
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Chen Feng
Department Of Polymer Materials And Engineering South China University Of Technology
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Zou Quanliang
Department Of Polymer Materials And Engineering South China University Of Technology
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LEI Yanda
Department of Polymer Materials and Engineering, South China University of Technology
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TANG Zhenghai
Department of Polymer Materials and Engineering, South China University of Technology
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Tang Zhenghai
Department Of Polymer Materials And Engineering South China University Of Technology
著作論文
- The Role of Interactions between Halloysite Nanotubes and 2,2'-(1,2-Ethenediyldi-4,1-phenylene) Bisbenzoxazole in Halloysite Reinforced Polypropylene Composites
- Formation of Reinforcing Inorganic Network in Polymer via Hydrogen Bonding Self-Assembly Process
- Preparation and Characterization of Polypropylene Grafted Halloysite and Their Compatibility Effect to Polypropylene/Halloysite Composite
- Structure and Performance of Polyamide 6/Halloysite Nanotubes Nanocomposites
- SBR/silica composites modified by a polymerizable protic ionic liquid
- Significantly improved performance of rubber/silica composites by addition of sorbic acid