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Synthesis and physical properties of environmentally responsive polymer gels.

机译:环境响应性聚合物凝胶的合成和物理性质。

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Polymer gels undergo the volume phase transition in response to an infinitesimal environmental change. This remarkable phenomenon results in many potential applications of polymer gels. This dissertation systematically investigates the chemical and physical properties of polymer gels.; It is found that infrared radiation laser not only induces a volume phase transition in N-isopropylacrylamide (NIPA) gel, but also causes the gel to bend toward the laser beam. The transmission of visible laser light through a NIPA gel can also be controlled by adjusting the infrared laser power.; A new class of environmentally responsive materials based on spatial modulation of the chemical nature of gels has been proposed and demonstrated. Three simple applications based on the modulated gels are presented: a bi-gel strip, a shape memory gel, and a gel hand. The bending of bi-gels has been studied as a function of temperature, acetone aqueous solution, and salt solution.; As the polymer network concentration increases, the behavior of shear modulus of acrylamide (PAAM) gels deviates significantly from the classical theory. The ionic NIPA gels undergo two sequential volume phase transitions: one occurs in dilute NaCl solution, the other occurs in concentrated NaCl solution. An interpenetrating polymer network (IPN) of PAAM-NIPA has also been synthesized using free radical polymerization. It is found that the IPN gels preserve the essential properties of individual components. The volume phase transition of the IPN gels can be triggered by multiple external stimuli including temperature, acetone concentration, and salt concentration.
机译:聚合物凝胶响应于无限的环境变化而经历体积相变。这种显着现象导致了聚合物凝胶的许多潜在应用。本文系统地研究了聚合物凝胶的化学和物理性质。发现红外辐射激光不仅在N-异丙基丙烯酰胺(NIPA)凝胶中引起体积相变,而且使凝胶向激光束弯曲。也可以通过调节红外激光功率来控制可见光通过NIPA凝胶的透射。已经提出并证明了基于对凝胶化学性质的空间调节的一类新型的环境响应材料。提出了基于调制凝胶的三种简单应用:双凝胶条,形状记忆凝胶和凝胶手。已经研究了双凝胶的弯曲随温度,丙酮水溶液和盐溶液的变化。随着聚合物网络浓度的增加,丙烯酰胺(PAAM)凝胶的剪切模量行为明显偏离经典理论。离子NIPA凝胶经历两个连续的体积相变:一个发生在稀NaCl溶液中,另一个发生在浓NaCl溶液中。还使用自由基聚合合成了PAAM-NIPA的互穿聚合物网络(IPN)。发现IPN凝胶保留了各个组分的基本性能。 IPN凝胶的体积相变可以通过多种外部刺激来触发,包括温度,丙酮浓度和盐浓度。

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