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Influence of Binary Microgel Phase Behavior on the Assembly of Multi-Functional Raspberry-Structured Microgel Heteroaggregates

机译:二元微凝胶相行为对多功能覆盆子结构化微凝胶杂聚集体组装的影响

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摘要

We investigate the influence of microgel composition on phase behavior of binary microgel dispersions using poly(N-isopropylacrylamide) microgels cross-linked with 5 mol-% and 1 mol-% N,N′-methylenebis(acrylamide), or poly(N-isopropylmethacrylamide) microgels cross-linked with 5 mol-% N,N′-methylenebis(acrylamide). We then explore the dispersion phase behavior in the context of microgel deposition at a planar interface. These results are then compared to the observed assembly of microgels at curved interfaces, in the form of raspberry-like patchy particles (RLPPs) consisting of a polystyrene core surrounded by a (two-component) microgel shell. Results suggest that microgel composition has a large influence on the ability of binary dispersions to coat planar and curved interfaces. In particular, we demonstrate that binary dispersions of microgels containing higher cross-linker content exhibit decreased packing densities that are very pronounced at a curved interface. To enhance packing density we also explore the use of a two-step coating process to fabricate RLPPs with enhanced control over topography. Development of these complex vehicles is potentially beneficial in the modulation of biological systems where spatial and temporal presentation of molecules can have a large influence on cellular behavior.
机译:我们研究了微凝胶组成对二元微凝胶分散体的相行为的影响,该二元微凝胶分散体使用了与5 mol%和1 mol%N,N'-亚甲基双(丙烯酰胺)或poly(N-异丙基甲基丙烯酰胺)微凝胶与5 mol%N,N'-亚甲基双(丙烯酰胺)交联。然后,我们在平面界面上的微凝胶沉积环境中探索了分散相的行为。然后将这些结果与观察到的微凝胶在弯曲界面处的组装相比较,呈凝胶状的覆盆子状补丁颗粒(RLPPs)形式,其由被(两组分)微凝胶壳包围的聚苯乙烯核组成。结果表明,微凝胶组成对二元分散体覆盖平面和弯曲界面的能力有很大的影响。特别地,我们证明了含有较高交联剂含量的微凝胶的二元分散体表现出降低的堆积密度,这在弯曲界面处非常明显。为了提高堆积密度,我们还探索了使用两步涂覆工艺来制造RLPP的方法,并增强了对形貌的控制。这些复杂载体的开发在调节生物系统中可能是有益的,在生物系统中,分子的时空表现可能会对细胞行为产生重大影响。

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