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Tuning the Size of Thermoresponsive Poly( N -Isopropyl Acrylamide) Grafted Silica Microgels

机译:调整热响应性聚(N-异丙基丙烯酰胺)接枝二氧化硅微凝胶的大小

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Core-shell microgels were synthesized via a free radical emulsion polymerization of thermoresponsive poly-( N -isopropyl acrylamide), pNipam, on the surface of silica nanoparticles. Pure pNipam microgels have a lower critical solution temperature (LCST) of about 32 °C. The LCST varies slightly with the crosslinker density used to stabilize the gel network. Including a silica core enhances the mechanical robustness. Here we show that by varying the concentration gradient of the crosslinker, the thermoresponsive behaviour of the core-shell microgels can be tuned. Three different temperature scenarios have been detected. First, the usual behaviour with a decrease in microgel size with increasing temperature exhibiting an LCST; second, an increase in microgel size with increasing temperature that resembles an upper critical solution temperature (UCST), and; third, a decrease with a subsequent increase of size reminiscent of the presence of both an LCST, and a UCST. However, since the chemical structure has not been changed, the LCST should only change slightly. Therefore we demonstrate how to tune the particle size independently of the LCST.
机译:核-壳微凝胶是通过在二氧化硅纳米颗粒表面上热响应性聚(N-异丙基丙烯酰胺)pNipam进行自由基乳液聚合而合成的。纯pNipam微凝胶的临界溶液温度(LCST)较低,约为32°C。 LCST随用于稳定凝胶网络的交联剂密度略有不同。包含二氧化硅核可增强机械强度。在这里我们表明,通过改变交联剂的浓度梯度,可以调节核-壳微凝胶的热响应行为。已检测到三种不同的温度情况。首先,随着温度的升高,微凝胶尺寸减小的通常行为表现出LCST。第二,微凝胶尺寸随温度的升高而增加,类似于上临界溶液温度(UCST);以及第三,随着尺寸的增加而减小,这让人联想到LCST和UCST的存在。但是,由于化学结构没有改变,因此LCST只能稍有改变。因此,我们演示了如何独立于LCST调整粒径。

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