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Electrospinning and Rheological Behavior of Poly(vinyl alcohol)/Collagen Blended Solutions 被引量:1
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作者 张晓莉 汤克勇 ZHENG Xuejing 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2015年第4期840-846,共7页
Poly(vinyl alcohol)/collagen (PVA/COL) micro-nanofibers were successfully prepared by electrospinning process. Water, green, and non-toxic was used as the solvent. The electrospun mats consisted of micro-nanoscale... Poly(vinyl alcohol)/collagen (PVA/COL) micro-nanofibers were successfully prepared by electrospinning process. Water, green, and non-toxic was used as the solvent. The electrospun mats consisted of micro-nanoscale fibers with mean diameter ranging from approximately 363 nm to 179 nm. It was observed that the mean diameters of PVA/COL electrospun fibers decreased with increasing collagen content. The effects of PVA/COL blending ratio on the rheological behavior of PVA/COL blended solutions were investigated by rotate rheometer. It was found that PVA/COL blended solutions behaved as Non-Newtonian fluids. With increasing collagen content, the Non-Newtonian index (n) of PVA/COL blended solutions decreased. Meanwhile, a linear relationship was found between the Non-Newtonian index (n) and the mean diameters of the PVA/COL micro- nanofibers. The chemical structures of PVA/COL electrospun fibers were also characterized by FTIR. 展开更多
关键词 ELECTROSPINNING PVA/COL blended solution micro-nanofibers rheological behavior
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Antibacterial Thermoplastic Polyurethane/PL-DOSS Composite Films 被引量:1
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作者 Xiao Liu Jian-Wei Guo +4 位作者 Ya-Dong Liu Ming Liu Hui Liu Miao-Miao Han Sheng-Xiang Ji 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2021年第8期1020-1028,I0007,共10页
Medical devices-related infections pose a great threat to patients and cause an increased morbidity and mortality. Herein, we prepare an antibacterial composite(TPU-x) through blending medical grade thermoplastic poly... Medical devices-related infections pose a great threat to patients and cause an increased morbidity and mortality. Herein, we prepare an antibacterial composite(TPU-x) through blending medical grade thermoplastic polyurethane(TPU) and the complex(PL-DOSS) of ε-polylysine(ε-PL) and docusate sodium(DOSS). >99% reduction of colony forming unit(CFU) can be obtained in TPU-x composite films even at relatively low content of PL-DOSS, e.g. 0.13% for Methicillin resistant S. aureus(MRSA) and 0.5% for E. coli. The excellent antibacterial activity is mainly attributed to the formation of PL-DOSS nanoparticles that are uniformly dispersed in the TPU matrix with a size of ~100 nm. TPU-x composite films exhibit long-term stability in saline and good biocompatibility, and retain mechanical properties of TPU. 展开更多
关键词 Nosocomial infections Antibacterial composite solution blending Thermoplastic polyurethane POLYLYSINE
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