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首页> 外文期刊>Journal of Dispersion Science and Technology >Synthesis, Characterization, and Silver Nanoparticles Fabrication in N-isopropylacrylamide-Based Polymer Microgels for Rapid Degradation of p-Nitrophenol
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Synthesis, Characterization, and Silver Nanoparticles Fabrication in N-isopropylacrylamide-Based Polymer Microgels for Rapid Degradation of p-Nitrophenol

机译:N-异丙基丙烯酰胺基聚合物微凝胶的合成,表征和银纳米粒子的制备,用于对硝基苯酚的快速降解

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Multiresponsive poly(N-isopropylacrylamide-co-methacrylic acid) microgels were synthesized by precipitation polymerization in aqueous medium. Then silver-poly(N-isopropylacrylamide-comethacrylic acid) hybrid microgels were prepared by in-situ reduction of silver ions. Formation of microgels was confirmed by Fourier transform infrared spectroscopic analysis. pH and temperature sensitivity of microgel was studied by dynamic light scattering. Hydrodynamic radius of microgels decreases with increase in temperature at pH 8.20 and show volume phase transition temperature around 45℃. At pH 2.65, hydrodynamic radius decreases with increase in temperatures upto 35℃ but further increase in temperature causes aggregation and microgel becomes unstable due to increase of hydrophobicity. With increase in pH of medium, the hydrodynamic radius of microgels increases sigmoidally. Formation of silver nanoparticles inside microgel and pH dependence of surface plasmon resonance wavelength of the hybrid microgels were investigated by ultraviolet-visible spectroscopy. The value of surface plasmon resonance band and absorbance associated with surface plasmon resonance band increases with increases in pH of the medium. The apparent rate constant of reduction of p-nitrophenol was found to be linearly dependent on volume of hybrid microgels used as catalyst. The system has a potential to be used as effective catalyst for rapid degradation of industrial pollutant.
机译:通过在水性介质中进行沉淀聚合反应,合成了多反应性聚(N-异丙基丙烯酰胺-共-甲基丙烯酸)微凝胶。然后通过原位还原银离子制备了银-聚(N-异丙基丙烯酰胺-甲基丙烯酸)杂化微凝胶。通过傅立叶变换红外光谱分析确认了微凝胶的形成。通过动态光散射研究了微凝胶的pH和温度敏感性。在pH值为8.20时,微凝胶的流体力学半径随温度的升高而减小,并显示出45℃左右的体积相变温度。在pH 2.65时,流体动力学半径随温度的升高而降低,直至35℃,但温度的进一步升高会导致聚集,并且由于疏水性的增加,微凝胶变得不稳定。随着介质pH值的增加,微凝胶的流体动力学半径呈S形增加。通过紫外可见光谱研究了微凝胶内部银纳米颗粒的形成以及杂化凝胶的表面等离子体共振波长的pH依赖性。表面等离振子共振带的值和与表面等离振子共振带相关的吸光度随着介质pH的增加而增加。发现对硝基苯酚的表观还原速率常数与用作催化剂的杂化微凝胶的体积线性相关。该系统有潜力用作有效降解工业污染物的有效催化剂。

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