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天然高分子材料高性能化及功能化研究;生物质多孔材料的构建与性能研究;纤维素基生物医用材料的开发及性能研究;新型生物质基吸附材料的制备与性能。

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1. Ying Pei, Xingjun Wu, Gaoqiang Xu, et al. Tannin-immobilized cellulose microspheres as effective adsorbents for removing cationic dye (Methylene Blue) from aqueous solution, J Chem Technol Biotechnol, 2017, 92: 1276-1284. 2. Ying Pei, Shan Chu, Yue Chen, et al. Tannin-immobilized cellulose hydrogel fabricated by a homogeneous reaction as a potential adsorbent for removing cationic organic dye from aqueous solution, International Journal of Biological Macromolecules, 2017,10: 254-260. 3. Ying Pei, Xingjun Wu, Gaoqiang Xu, et al. Activated Carbon-Entrapped Microfibrilated Cellulose Films As An Effective Adsorbent For Removing Organic Dye From Aqueous Effluent, Journal of Wood Chemistry and Technology, 2017, doi.org/10.1080/02773813.2017.1316742 4. Ying Pei, Dongdong Ye, Qi Zhao, et al. Effectively promoting wound healing with cellulose/gelatin sponges constructed directly from a cellulose solution, Journal of Materials Chemistry B, 2015,3, 7518-7528 5. Ying Pei, Xueying Wang,Min Xie, et al. An artificial blood vessel implanted three-dimensional microsystem for modeling transvascular migration of tumor cells, Lab on a Chip, 2015, 15, 1178-1187. 6. Ying Pei, Xueying Wang, Weihua Huang, Pan Liu, Lina Zhang. Cellulose-Based Hydrogel as Microfluidic Device for Three Dimensional Cell Culture, Cellulose, 2013, 20: 1897-1909. 7. Ying Pei, Juan Yang, Pan Liu, Min Xu, Xianzheng Zhang and Lina Zhang. Fabrication, Properties and bioapplications of cellulose /collagen hydrolysate composite Films, Carbohydrate Polymers, 2013, 92: 1752–1760.

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