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Thermosensitive Behavior and Super-Antibacterial Properties of Cotton Fabrics Modified with a Sercin-NIPAAm-AgNPs Interpenetrating Polymer Network Hydrogel

机译:丝氨酸-NIPAAm-AgNPs互穿聚合物网络水凝胶修饰的棉织物的热敏性能和超抗菌性能。

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摘要

Poly(N-isopropylacrylamide) (PNIPAAm), sericin (SS), and silver nitrate were combined to prepare an interpenetrating network (IPN) hydrogel having dual functions of temperature sensitivity and antibacterial properties. The structure and size of AgNPs in such an IPN hydrogel were characterized by the Fourier Transform Infrared spectrum (FT-IR), X-ray powder diffraction (XRD) and Transmission Electron Microscope (TEM), and the thermal properties of the IPN hydrogel were characterized by Differential Scanning Calorimetry (DSC). Based on XRD patterns, Ag+ was successfully reduced to Ag0 by SS. It was observed by TEM that the particle size of silver particles was lower than 100 nm. The glass transition temperature (Tg) of IPN hydrogel was better than that of the PNIPAAm/AgNPs hydrogels, and lower critical solution temperature (LCST) values of the IPN hydrogel were obtained by DSC i.e. 31 °C. The thermal stability of the IPN hydrogel was successfully determined by the TGA. This IPN hydrogel was then used to modify the cotton fabrics by the “impregnation” method using glutaraldehyde (GA) as the cross-linking agent. The structures and properties of IPN hydrogel modified cotton fabric were characterized by scanning electron microscopy (SEM), FT-IR, and the thermogravimetry analysis (TGA). The results show that NIPAAm was successfully polymerized into PNIPAAm, and that there were neglected new groups in the hydrogel IPN. The IPN hydrogel was then successfully grafted onto cotton fabrics. SEM observations showed that the IPN hydrogel formed a membrane structure between the fibers, and improved the compactness of the fibers. At the temperature close to LCST (≈31 °C), the entire system was easily able to absorb water molecules. However, the hydrophilicity tended to decrease when the temperature was higher or lower than the LCST. The antibacterial rates of the modified cotton fabric against S. aureus and E. coli were as high as 99%.
机译:将聚(N-异丙基丙烯酰胺)(PNIPAAm),丝胶(SS)和硝酸银结合,以制备具有温度敏感性和抗菌性能双重功能的互穿网络(IPN)水凝胶。通过傅立叶变换红外光谱(FT-IR),X射线粉末衍射(XRD)和透射电子显微镜(TEM)表征了这种IPN水凝胶中AgNP的结构和大小,其热性质为以差示扫描量热法(DSC)为特征。根据X射线衍射图谱,SS成功地将Ag + 还原为Ag 0 。通过TEM观察,银粒子的粒径小于100nm。 IPN水凝胶的玻璃化转变温度(Tg)优于PNIPAAm / AgNPs水凝胶,并且通过DSC获得的IPN水凝胶的临界溶液温度(LCST)值较低,即31°C。通过TGA成功确定了IPN水凝胶的热稳定性。然后使用戊二醛(GA)作为交联剂,通过“浸渍”方法将该IPN水凝胶用于棉织物的改性。 IPN水凝胶改性棉织物的结构和性能通过扫描电子显微镜(SEM),FT-IR和热重分析(TGA)进行表征。结果表明,NIPAAm已成功聚合为PNIPAAm,并且水凝胶IPN中存在被忽略的新基团。然后将IPN水凝胶成功接枝到棉织物上。 SEM观察表明,IPN水凝胶在纤维之间形成膜结构,并改善了纤维的致密性。在接近LCST(≈31°C)的温度下,整个系统很容易吸收水分子。然而,当温度高于或低于LCST时,亲水性趋于降低。改性棉织物对金黄色葡萄球菌和大肠杆菌的抗菌率高达99%。

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