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Y. Yang, T. Xia,, F. Chen, W. Wei, C.Y. Liu, S.H. He, X.H. Li*. Electrospun fibers with plasmid bFGF polyplexes loadings promote skin wound healing in diabetic rats. Mol. Pharm., 9: 48?58 (2012).
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J.G. Chen, X.H. Li,* W.G. Cui, C.Y Xie, J. Zou, B. Zou. Fibrous composites with anisotropic distribution of mechanical properties after layer-by-layer deposition of aligned electrospun fibers. Adv. Eng. Mater., 12: B529-538 (2010)
J.G. Chen, X.H. Li,* W.G. Cui, C.Y Xie, J. Zou, B. Zou. Fibrous composites with anisotropic distribution of mechanical properties after layer-by-layer deposition of aligned electrospun fibers. Adv. Eng. Mater.,12: B529-538 (2010)
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Y. Yang, T. Xia, W. Zhi, L. Wei, J. Weng, C. zhang, X.H. Li*. Promotion of skin regeneration in diabetic rats by electrospun core-sheath fibers loaded with basic fibroblast growth factor. Biomaterials, 32: 4243-4254 (2011)
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Y. Yang, X.H. Li*, S L. Cheng, S.H. He, J. Zou, F. Chen, Z.B. Zhang. Core-sheath-structured fibers with pDNA polyplex loadings for optimal release profile and transfection efficiency as potential tissue engineering scaffolds. Acta Biomater. 7: 2533–2543 (2011)
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W.G. Cui, X.H. Li,* C.Y. Xie, J.G. Chen, J. Zou, S.B. Zhou, J. Weng. Controllable growth of hydroxyapatite on electrospun poly(DL-lactide) fibers grafted with chitosan as potential tissue engineering scaffolds. Polymer, 51: 2320-2328 (2010).
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【2018】祝贺于欢硕士期间第二篇文章发表在Chemical Engineering Journal(IF:6.7,一区)
组内首篇关于抗菌医用导管工作,对应用工作和威高项目起到一定支撑作用。
No.: CEJ-D-18-05741R1
Title: Fabrication of polylysine based antibacterial coating for catheters by facile electrostatic interaction
Chemical Engineering Journal
Dear Dr. Hengchong Shi,
I am pleased to confirm that your paper "Fabrication of polylysine based antibacterial coating for catheters by facile electro...
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Chemical Engineering Journal:低磁场调控制备高导电各项异性复合材料
全文链接: https://www.sciencedirect.com/science/article/pii/S1385894718307204
http://www.polymer.cn/ss/ming/newsshow_5260.html |
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祝贺本小组在Accounts of Chemical Research上发表羰基硫共聚的专论文章
羰基硫(COS),又称氧硫化碳,是大气硫循环中含量最多的含硫化合物,纯净的COS无色无味。自然界中主要产生于火山爆发、海洋中含硫化合物分解和动植物腐烂等。人类工业活动如化石能源如煤炭的燃烧也产生大量COS。COS会严重腐蚀设备,散逸到高空中既产生二氧化硫导致酸雨,又会被光氧化破坏臭氧层。COS可以用作熏蒸剂,用于替代溴甲烷、磷化氢等;也可合成杀虫剂巴丹、除草剂燕麦敌、杀草丹等,工业上常用于在线仪...
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