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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Core-Shell-Shell and Hollow Double-Shell Microgels with Advanced Temperature Responsiveness
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Core-Shell-Shell and Hollow Double-Shell Microgels with Advanced Temperature Responsiveness

机译:具有高级温度响应性的核-壳-壳和中空双壳微凝胶

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摘要

Unique doubly temperature-responsive hollow microgels are presented. These consist of two concentric thermoresponsive polymer shells made of poly(N -isopropylacrylamide) (PNIPAM) and poly(N -isopropylmethacrylamide) (PNIPMAM), respectively. The hollow particles are derived from silica-PNIPAM-PNIPMAM core-shell-shell (CSS) particles by dissolution of the silica core. Light scattering measurements reveal the twofold volume phase transition behavior that occur in the PNIPAM and PNIPMAM regions of the CSS and the respective hollow particles. In the presence of the silica core, i.e., in case of the CSS particles, the swelling of the inner shell is tremendously restricted by the core. However, after the core is dissolved, the transition of the inner shell from the swollen to the collapsed state is highly pronounced. This versatile approach allows preparing hollow particles with individually tunable properties on the particle inside and outside for various applications as multifunctional smart materials.
机译:提出了独特的双重温度响应空心微凝胶。它们由分别由聚(N-异丙基丙烯酰胺)(PNIPAM)和聚(N-异丙基甲基丙烯酰胺)(PNIPMAM)制成的两个同心的热响应性聚合物壳组成。中空颗粒通过溶解二氧化硅核而衍生自二氧化硅-PNIPAM-PNIPMAM核-壳-壳(CSS)颗粒。光散射测量揭示了在CSS的PNIPAM和PNIPMAM区域以及相应的中空粒子中发生的双重体积相变行为。在二氧化硅核的存在下,即在CSS颗粒的情况下,核的内壳膨胀受到极大的限制。然而,在核溶解之后,内壳从溶胀状态到塌陷状态的转变非常明显。这种通用的方法允许在内部和外部的粒子上制备具有可单独调整属性的空心粒子,以用作各种多功能智能材料。

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