首页> 外文期刊>Journal of Applied Polymer Science >Electrospun mat of thermal-treatment-induced nanocomposite hydrogel of polyvinyl alcohol and cerium oxide for biomedical applications
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Electrospun mat of thermal-treatment-induced nanocomposite hydrogel of polyvinyl alcohol and cerium oxide for biomedical applications

机译:热处理诱导的纳米复合水凝胶的电纺垫和生物医学应用的氧化铈

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摘要

Hydrogels are one of the most thought-provoking formulations used widely for biomedical applications. In the present investigation, poly(vinyl) alcohol (PVA) and its cerium oxide (CO) composite-based hydrogels were prepared by the combination of electrospinning and thermal processing technique. The partial crosslinking, along with time-controlled heating (10 min), delivered PVA hydrogel. The mechanism was explained with Fourier-transform infrared spectroscopy analysis, where the hydroxyl group disappeared in long-duration (30 min) of heat treatment and they retain in lesser duration. The heat-treated PVA transformed from amorphous to crystalline, since the T-g of PVA disappeared in 30 min heat treatment, while the T-g increased to 85 degrees C (10 min heat treatment) from 70 degrees C in PVA, suggested the full and partial crystallinity. The swelling and porosity studies reveal the hydrogel formation of heat-treated PVA. Interestingly, CO reinforced PVA composites show better swelling with respect to heat-treated PVA. Furthermore, CO reinforced PVA hydrogel demonstrated better biocompatibility platelet adhesion and accelerated wound healing competence.
机译:水凝胶是广泛用于生物医学应用的思想挑衅性配方之一。在本发明的研究中,通过静电纺丝和热加工技术的组合制备了聚(乙烯基)醇(PVA)及其氧化铈(CO)复合材料的水凝胶。部分交联,以及时间控制的加热(10分钟),递送PVA水凝胶。用傅里叶变换红外光谱分析来解释该机制,其中羟基在热处理(30分钟)的热处理中消失,它们保持较小的持续时间。从无定形的聚合物转化的热处理的PVA,因为PVA的Tg在30分钟的热处理中消失,而Tg在PVA中的70摄氏度增加到85摄氏度(10分钟热处理),建议完全和部分结晶度。肿胀和孔隙度研究显示了热处理的PVA水凝胶形成。有趣的是,CO增强的PVA复合材料表现出相对于热处理的PVA更好的肿胀。此外,CO增强PVA水凝胶显示出更好的生物相容性血小板粘附和加速伤口愈合能力。

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