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首页> 外文期刊>Biomaterials >PEO-grafting on PU/PS IPNs for enhanced blood compatibility--effect of pendant length and grafting density.
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PEO-grafting on PU/PS IPNs for enhanced blood compatibility--effect of pendant length and grafting density.

机译:在PU / PS IPN上进行PEO接枝以增强血液相容性-悬链长度和接枝密度的影响。

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摘要

Polyurethane (PU) homopolymers and PU/polystyrene (PS) interpenetrating polymer networks (IPNs) were successfully synthesized changing the length of the pendant poly(ethylene oxide) (PEO) chains and the grafting density of PEO chains. All the PU/PS IPNs had the microphase-separated structures in which the PS-rich phase domains were dispersed in the matrix of the PU-rich phase. The domain size decreased a little, as the degree of grafting with PEO chains was increased. The water swelling ratio increased, and the interfacial energy decreased, as the length of the pendant PEO chains, and the grafting density of PEO chains of the PEO-grafted PU/PS IPNs were increased, since the mobile hydrophilic pendant PEO chains effectively induced and absorbed the water, when they were contacted with water. The hydrophilic and highly concentrated pendant PEO chains could easily prohibit the adhesion of the fibrinogens and the platelets on the surface, and the blood compatibility of IPNs was enhanced by increasing of grafting with PEO chains. The adsorption of the fibrinogens and the platelets was suppressed, as the length of pendant PEO chains, and the grafting density were increased.
机译:通过改变侧挂聚环氧乙烷(PEO)链的长度和PEO链的接枝密度,成功地合成了聚氨酯(PU)均聚物和PU /聚苯乙烯(PS)互穿聚合物网络(IPN)。所有的PU / PS IPN都具有微相分离的结构,其中富含PS的相域分散在富含PU的相的基质中。随着PEO链的接枝度增加,结构域尺寸略有减小。随着PEO侧链的长度增加,水溶胀率增加,界面能降低,并且PEO接枝的PU / PS IPNs的PEO链的接枝密度增加,这是因为可移动的亲水性PEO侧链可以有效地诱导和当它们与水接触时吸收水分。亲水性高浓度的侧链PEO链很容易阻止纤维蛋白原和血小板在表面的粘附,并且通过增加PEO链的接枝可以增强IPN的血液相容性。随着PEO侧链长度的增加和接枝密度的增加,纤维蛋白原和血小板的吸附受到抑制。

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