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Response Mechanism of the Phase Transitions of Poly(N-Isopropylacrylamide-Co-Benzo-18-Crown-6-Acrylamide) Using Infrared Spectroscopy

机译:聚(N-异丙基丙烯酰胺-Co-Benzo-18-Crown-6-丙烯酰胺)相变的响应机理

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The thermal and ionic effects on the phase transitions of poly(N-isopropylacrylamide) (PNIPAAm) and its copolymer with benzo-18-crown-6-acrylamide, poly(N-isopropylacrylamide-co-benzo-18-crown-6-acrylamide) (PNIPAAm-co-BCAm), were investigated using infrared (IR) spectral variations of methyl (CH_3), C=O, and amine (NH) groups. Subsequently, perturbation correlation moving-window two-dimensional correlation infrared spectroscopy (PCMW 2D-IR) was applied to clarify the differences in the phase-transition mechanisms of the polymers. The dominant influence on the phase-transition mechanism of PNIPAAm is whether the anion is evenly distributed in the bulk solution. The results show that the phase transition shifts to a lower temperature with increasing barium chloride (BaCl_2) concentrations. In addition, the effect of the anion on the chemical group is homogeneous upon heating. As a result, the relevant transition temperature ranges have remain approximately constant. In contrast, the dominant influence on the phase-transition mechanism of PNIPAAm-co-BCAm is the interactions of the polymer chains with barium ions (Ba~(2+)). The hydrophilic BCAm-Ba~(2+) complexes distributed in the PNIPAAmco-BCAm chain prevent the water molecules from leaving the polymer chains, which leads to an increase in the transition temperature and the complicated variation of the transition temperature range, as environmental stimuli-response behavior, with increasing BaCl_2 concentrations.
机译:聚(N-异丙基丙烯酰胺)(PNIPAAm)及其与苯并18-冠-6-丙烯酰胺,聚(N-异丙基丙烯酰胺-共-苯并-18-冠-6-丙烯酰胺)共聚物的相变的热和离子效应(PNIPAAm-co-BCAm),使用甲基(CH_3),C = O和胺(NH)基团的红外(IR)光谱变化进行研究。随后,采用摄动相关移动窗口二维相关红外光谱法(PCMW 2D-IR)来阐明聚合物的相变机理的差异。 PNIPAAm的相变机理的主要影响因素是阴离子是否均匀分布在本体溶液中。结果表明,随着氯化钡(BaCl_2)浓度的增加,相变转变为较低的温度。另外,加热时阴离子对化学基团的作用是均匀的。结果,相关的转变温度范围保持大致恒定。相反,对PNIPAAm-co-BCAm相变机理的主要影响是聚合物链与钡离子(Ba〜(2+))的相互作用。分布在PNIPAAmco-BCAm链中的亲水性BCAm-Ba〜(2+)络合物可防止水分子离开聚合物链,这会导致过渡温度升高,并且由于环境刺激而导致过渡温度范围的复杂变化。响应行为,随BaCl_2浓度的增加而增加。

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