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The stimuli-responsive multiphase behavior of core-shell nanogels with opposite charges and their potential application in in situ gelling system

机译:具有相反电荷的核-壳纳米凝胶的刺激响应多相行为及其在原位胶凝体系中的潜在应用

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Concentrated p(N-isopropylacrylamide) (PNIPAM) nanogel dispersions exhibited rich temperature-sensitive sol-gel phase transition behavior. In the present work, the influence of electrostatic forces between nanogel particles, including attraction and repulsion, on the sal-gel phase transition behavior of PNIPAM nanogel dispersions has been studied. Both oppositely charged nanogels with core-shell structures (NIA and PND nanogels) were synthesized, and their shell charges were calculated to -0.33 and 0.082 mmol/g by potentiometric titration method. When mixed with various ratio of negative and positive charge (NC value), the resultant mixture dispersions of NIA and PND nanogel (OCNs) exhibited different aggregating behavior from NIA and PND nanogels. OCN-e aggregates (NC value =1/4), which exhibited temperature-independence of electric neutrality, had the maximum size, about 1.9-2.2 times larger than NIA or PND nanogels. Concentrated OCN-e dispersions exhibited stronger ability to form shrunken gel. Its CGC was about 2.0 wt%, 4-times lower than that of NIA and PND nanogels (about 8.0 wt%). In vitro and in vivo gelling results indicated that OCN-e aggregates could form free-standing gel with good mechanical strength, and were promising to be developed as new in situ gelling system. (C) 2015 Elsevier B.V. All rights reserved.
机译:浓缩的对(N-异丙基丙烯酰胺)(PNIPAM)纳米凝胶分散体表现出丰富的温度敏感性溶胶-凝胶相变行为。在目前的工作中,已经研究了包括吸附力和排斥力在内的纳米凝胶颗粒之间的静电力对PNIPAM纳米凝胶分散体的sal-gel相转变行为的影响。合成了两种带有核-壳结构的带相反电荷的纳米凝胶(NIA和PND纳米凝胶),并通过电位滴定法将其壳电荷分别计算为-0.33和0.082 mmol / g。当与各种比例的负电荷和正电荷(NC值)混合时,所得的NIA和PND纳米凝胶(OCNs)混合物分散体表现出与NIA和PND纳米凝胶不同的聚集行为。 OCN-e聚集体(NC值= 1/4)显示出与电中性无关的温度,其最大尺寸约为NIA或PND纳米凝胶的1.9-2.2倍。浓缩的OCN-e分散体表现出形成收缩凝胶的较强能力。其CGC约为2.0 wt%,比NIA和PND纳米凝胶(约8.0 wt%)低4倍。体外和体内胶凝结果表明,OCN-e聚集体可形成具有良好机械强度的自立式凝胶,并有望被开发为新的原位胶凝系统。 (C)2015 Elsevier B.V.保留所有权利。

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