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软段长度对含氟聚氨酯性能的影响。

Effect of soft segment length on properties of fluorinated polyurethanes.

作者信息

Wang Li-Fen, Wei Yu-Hong

机构信息

Department of Applied Chemistry, Fooyin University, Kaohsiung, 831 Taiwan, ROC.

出版信息

Colloids Surf B Biointerfaces. 2005 Apr 10;41(4):249-55. doi: 10.1016/j.colsurfb.2004.12.014.

Abstract

The effects of soft segment length on the variations in morphology, surface composition, and hydrophilicity have been studied in fluorinated polyurethanes (FPUs) and correlated with their preliminary blood compatibility as evidenced by in vitro platelet adhesion experiments. The fluorinated polyurethanes were obtained using hexamethylene diisocyanate (HDI) and chain extender of 2,2,3,3-tetrafluoro-1,4-butanediol (TF) as the hard segment as well as various soft segments-polytetramethyl oxides (PTMO) with molecular weights of 650, 1000, 1400, and 2000. The increased phase separation in hard-segment domains with lengthening soft segment was observed by FT-IR, which is believed to result in enhanced strength of hydrogen bonds and good hard-segment order arrangement. Thin-film XRD results indicate at least three lateral distances existing between adjacent hard segments in the crystallized hard segment. Their distribution depends strongly on the length of soft segment. Lengthening soft segment promotes the formation of dense arrangement of crystallized hard segments. Compared with the effect of phase separation, surface composition was found to exert a major influence on the preliminary blood compatibility of fluorinated polyurethanes. Increasing fluorine content by decreasing soft segment length promotes reduction in platelet adhesion and activation on polyurethane surfaces.

摘要

在含氟聚氨酯(FPU)中研究了软段长度对形态、表面组成和亲水性变化的影响,并通过体外血小板黏附实验证明其与初步血液相容性相关。含氟聚氨酯是使用六亚甲基二异氰酸酯(HDI)和2,2,3,3 - 四氟 - 1,4 - 丁二醇(TF)作为硬段以及各种软段——分子量分别为650、1000、1400和2000的聚四甲基氧化物(PTMO)制得的。通过傅里叶变换红外光谱(FT - IR)观察到,随着软段长度增加,硬段域中的相分离增加,这被认为会导致氢键强度增强和硬段排列有序。薄膜X射线衍射(XRD)结果表明,在结晶硬段中相邻硬段之间至少存在三个横向距离。它们的分布强烈依赖于软段的长度。软段长度增加会促进结晶硬段形成致密排列。与相分离的影响相比,发现表面组成对含氟聚氨酯的初步血液相容性有主要影响。通过减小软段长度增加氟含量可促进聚氨酯表面血小板黏附和活化的减少。

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