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Effects of microcrystallites on swelling behavior in chemically crosslinked poly(vinyl alcohol) gels

机译:微晶对化学交联聚乙烯醇凝胶溶胀行为的影响

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We report the swelling ratio and network structure of a poly(vinyl alcohol) (PVA) gel chemically crosslinked by glutaraldehyde with different degrees of crosslinks. Microcrystallites were formed in a chemical PVA gel during a drying process and were confirmed by X-Ray diffraction (XRD) measurements and Fourier transform infrared (FTIR) spectroscopy. The formation of microcrystallites in the dried gels was suppressed by increasing the degrees of chemical crosslinks. When the dried samples were immersed in pure water at 25 °C, the swelling ratio depended on the degree of chemical crosslinks resulting from the destruction of physical crosslinks by microcrystallites. On the other hand, when the dried samples were immersed in a poor solvent of a mixture of dimethyl sulfoxide and water at 8 °C, the gels did not swell and stayed in the collapsed state. Starting from the collapsed state, the equilibrium swelling ratios were measured while the temperature was increased to 90 °C and then decreased to 8 °C. As a result, irreversible swelling behaviors were observed for all gels with different degrees of crosslinks, which were attributed to the destruction of microcrystallites. The swelling behavior is discussed in terms of the formation and destruction of additional physical crosslinks in the chemical PVA gels.
机译:我们报告了戊二醛化学交联程度不同的交联的聚乙烯醇(PVA)凝胶的溶胀率和网络结构。微晶在干燥过程中在化学PVA凝胶中形成,并通过X射线衍射(XRD)测量和傅里叶变换红外(FTIR)光谱进行确认。通过增加化学交联度,可以抑制干燥凝胶中微晶的形成。当将干燥的样品浸入25°C的纯水中时,溶胀率取决于微晶破坏物理交联所导致的化学交联程度。另一方面,当将干燥的样品在8℃下浸入二甲亚砜和水的混合物的不良溶剂中时,凝胶未溶胀并保持塌陷状态。从塌陷状态开始,测量平衡溶胀率,同时将温度升高到90°C,然后降低到8°C。结果,对于具有不同交联度的所有凝胶,观察到不可逆的溶胀行为,这归因于微晶的破坏。根据化学PVA凝胶中其他物理交联的形成和破坏来讨论溶胀行为。

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