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首页> 外文期刊>RSC Advances >Synthesis of polyurethanes with pendant azide groups attached on the soft segments and the surface modification with mPEG by click chemistry for antifouling applications
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Synthesis of polyurethanes with pendant azide groups attached on the soft segments and the surface modification with mPEG by click chemistry for antifouling applications

机译:通过点击化学合成防污应用,在软链段上连接具有叠氮侧基的聚氨酯,并用mPEG对表面进行改性

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Polyurethane with pendant azide groups on the soft segment (PU-GAP) was prepared in this study to further increase the content of reactive azide groups and improve their surfaces enrichment for further functionalization. Polymer diols with pendant azide groups (GAP) were prepared by transforming the pendant chlorine groups at polyepichlorohydrin (PECH) into azide groups with sodium azide. The prepared PECH, GAP and PU-GAP was characterized by GPC, ~(1) H NMR and FTIR. Propargylic mPEG (mPEG-alkyne) was used as model surface modification reagents which was grafted on the prepared azido containing polyurethane films via click chemistry. The surface morphology, chemical composition and wettabilities were studied by SEM, XPS and water contact angle (WCA) analysis, respectively. SEM results demonstrated different surface topologies between mPEG modified PU surface and original PU surface. XPS and WCA analysis proved the successful grafting of mPEG on the pendant azide groups of PUs. The mPEG modified PU surfaces demonstrated good antifouling activities against model bacteria and mPEG with larger molecular weights modified surfaces showed better resistance efficiency to attachment of bacteria. Therefore, the surface reactive polyurethane we prepared can be a universal platform for further functionalization according actual applications.
机译:在本研究中,制备了在软链段上具有叠氮化物侧基的聚氨酯(PU-GAP),以进一步增加反应性叠氮化物基团的含量并改善其表面富集度,以进一步实现功能化。通过用叠氮化钠将聚环氧氯丙烷(PECH)上的氯侧基转化为叠氮基,可以制备具有叠氮基挂基(GAP)的聚合物二醇。制备的PECH,GAP和PU-GAP通过GPC,〜(1)NMR和FTIR表征。丙炔基mPEG(mPEG-炔)被用作模型表面修饰剂,通过点击化学将其接枝到制备的含叠氮基聚氨酯膜上。通过SEM,XPS和水接触角(WCA)分析分别研究了表面形态,化学组成和润湿性。 SEM结果表明,mPEG修饰的PU表面和原始PU表面之间具有不同的表面拓扑。 XPS和WCA分析证明了mPEG在PU的叠氮化物侧基上的成功接枝。经mPEG修饰的PU表面对模型细菌表现出良好的防污活性,而具有较大分子量修饰表面的mPEG显示出对细菌附着的更好抵抗力。因此,根据实际应用,我们制备的表面反应性聚氨酯可以作为进一步功能化的通用平台。

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