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The Effect of Hydrophobicity on the Viscoelastic Creep Characteristics of Poly(ethylene glycol)-Acrylate Hydrogels

机译:疏水性对聚(乙二醇) - 丙烯酸酯水凝胶粘弹性蠕变特性的影响

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The creep behavior of hydrophobic poly(ethylene glycol)-acrylate hydrogels was well characterized by two Kelvin units in series, compared to the other various combinations of the liner viscoelastic elements investigated. The hydrogels were synthesized by reacting acrylate derivatives of poly(ethylene glycol) [PEG] with PEG-diacrylate as the crosslinking agent. By using different amounts of ω-phenoxy-PEG-acrylate in the monomer feed ratio, the hydrophobicity was varied. The extent of monomer conversion was greater than 95%, as determined by Raman spectroscopy. With increasing hydrophobicity, the elastic modulus of the hydrogels increased from 10.92 kPa to 35.10 kPa, and the density increased from 1.0004 g/cm~3 to 1.0091 g/cm~3, while the dimensional stability decreased from 1.55 to 1.48. Two Kelvin units in series well characterized the creep curve for various loads and time durations. The time constants were in the range of 1-2 s and approximately 300 a for the two Kelvin units. These hydrophobic hydrogels may be used as model tissues to determine the viscoelasticity of the human lens.
机译:疏水性聚(乙二醇) - 丙烯酸酯水凝胶的蠕变行为很好地表征了两种Kelvin单元串联,与所研究的衬里粘弹性元素的其他各种组合相比。水凝胶是由聚(乙二醇)的丙烯酸酯衍生物[PEG]与PEG-二丙烯酸酯作为交联剂反应而合成。通过在单体进料比中使用不同量的ω-苯氧基-PEG丙烯酸酯,改变疏水性。单体转化程度大于95%,如拉曼光谱法测定。随着疏水性的增加,水凝胶的弹性模量从10.92kPa增加到35.10kPa,并且密度从1.0004g / cm〜3增加到1.0091g / cm〜3,而尺寸稳定性从1.55降低到1.48。两个Kelvin单元串联特征在于各种负载和时间持续时间的蠕变曲线。两个开尔门单位的时间常数在1-2秒和大约300A的范围内。这些疏水性水凝胶可以用作模型组织以确定人晶状体的粘弹性。

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