首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Influence of shell thickness and cross-link density on the structure of temperature-sensitive - Poly-N-isopropylacrylamide-poly-N-isopropylmethacrylamide core-shell microgels investigated by small-angle neutron scattering
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Influence of shell thickness and cross-link density on the structure of temperature-sensitive - Poly-N-isopropylacrylamide-poly-N-isopropylmethacrylamide core-shell microgels investigated by small-angle neutron scattering

机译:壳厚度和交联密度对温度敏感结构的影响-小角度中子散射研究聚N-异丙基丙烯酰胺-聚N-异丙基甲基丙烯酰胺核-壳微凝胶

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摘要

Swelling properties of doubly temperature sensitive core-shell microgels consisting of two thermosensitive polymers with lower critical solution temperatures (LCTS) at, respectively, 34 degrees C in the core and 44 degrees C in the shell have been investigated by small-angle neutron scattering (SANS). A core-shell form factor has been employed to evaluate the structure, and the real space particle structure is expressed by radial density profiles. By this means, the influences of both shell/core mass composition and shell cross-linker content on the internal structure have been revealed at temperatures above, between, and below the LCSTs. Higher shell/core mass ratios lead to an increased expansion of the core at temperatures between the LCSTs, whereas a variation of cross-linker in the shell mainly effects the dimensions of the shell. The influence on the core structure was interpreted as resulting from an elastic force developed from the swollen shell. At temperatures below the core LCST, the core cannot swell to its native size (i.e., in the absence of a shell), because the maximum expanded shell network prohibits further swelling. Thus, depending on temperature, the shell either expands or compresses the core.
机译:通过小角度中子散射研究了由两种具有较低临界溶液温度(LCTS)的热敏性聚合物组成的双温度敏感性核-壳微凝胶的溶胀特性,分别在核中的34°C和壳中的44°C( SANS)。核-壳形状因子已用于评估结构,真实空间的粒子结构由径向密度分布表示。通过这种方法,已经在高于,低于和低于LCST的温度下揭示了壳/核质量组成和壳交联剂含量对内部结构的影响。较高的壳/核质量比导致在LCST之间的温度下核的膨胀增加,而壳中交联剂的变化主要影响壳的尺寸。对芯结构的影响被解释为是由溶胀的外壳产生的弹力引起的。在低于核心LCST的温度下,核心无法膨胀至其原始尺寸(即在没有外壳的情况下),因为最大的扩展外壳网络会阻止进一步膨胀。因此,取决于温度,壳会膨胀或压缩核。

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