Phase Transition Effects on Mechanical Properties of NIPA Hydrogel

低临界溶液温度 材料科学 相变 自愈水凝胶 聚合物 转变温度 高分子化学 动态力学分析 相(物质) 极限抗拉强度 化学工程 复合材料 共聚物 热力学 化学 有机化学 物理 超导电性 量子力学 工程类
作者
Ni Zhang,Shoujing Zheng,Zhouzhou Pan,Zishun Liu
出处
期刊:Polymers [MDPI AG]
卷期号:10 (4): 358-358 被引量:19
标识
DOI:10.3390/polym10040358
摘要

Due to its excellent temperature sensitivity, the Poly(N-isopropylacrylamide) (NIPA) hydrogel has attracted great interest for a wide variety of applications in tissue engineering and regenerative medicine. NIPA hydrogel undergoes an abrupt volume phase transition at a lower critical solution temperature (LCST) of 30⁻35 °C. However, the mechanical behaviors of NIPA hydrogel induced by phase transition are still not well understood. In this study, phase transition effects on mechanical properties of NIPA hydrogel are quantitatively studied from experimental studies. The mechanical properties of NIPA hydrogel with the LSCT around 35 °C are systemically studied with varying temperatures (31⁻39 °C) under a tensile test. We find that the mechanical properties of NIPA hydrogel are greatly influenced by phase transition during the tension process. The maximum nominal stress and maximum stretch above the LCST are larger than those of below the LCST. The Young's modulus of NIPA hydrogel is around 13 kPa at 31 °C and approximately 28 kPa at 39 °C. A dramatic increase of Young's modulus values is observed as the temperature increases through the phase transition. The samples at a temperature around the LCST are easy to rupture, because of phase coexistent. Additionally, NIPA hydrogel displays toughening behavior under a cyclic load. Furthermore, the toughening characteristic is different between the swollen state and the collapsed state. This might originate from the internal fracture process and redistribution of polymer chains during the tension process.
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