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Stimuli response of polysoap hydrogels in aqueous solution and DC electric fields

机译:水溶液和直流电场中多皂水凝胶的刺激响应

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Novel types of polysoap hydrogels based on hydrophobically-modified polyelectrolytes crosslinked with N,N-methylenebisacrylamide have been prepared by free radical polymerization at 70-80 degrees C in aqueous solution with ammonium persulfate as initiator. Poly(diallylamine-co-N,N-dodecylmethyldiallylammonium bromide) (PDA-C12), poly(N-methyldiallyl-co-N,N-dodecylmethydiallylammonium bromide) (PMDA-C12) both contain hydrophobic side chains with 12 carbon atoms. The swelling behavior of these polysoap hydrogels was studied by immersion of the gels in buffered solutions at various pHs and ionic strengths. It was found that the structure of the polysoap backbone influenced the pH-dependent swelling and deswelling. The swelling process is reversible after repeating cycles of swelling and deswelling induced by a change of pH in appropriate buffer solutions. SEM micrographs of polysoap gels indicate that the network structures are characterized by the presence of large open pores or small closed pores. The stimuli response of the polysoap gels in electric fields was also investigated. In a contact electric field, deswelling was observed at the anode side of the gels. In a non-contact electric field, the gels bend towards the anode. The gels can turn back to the original shape and bend toward the cathode with time when higher electric potentials are applied. These properties of the gels are related to bath the change of osmotic pressure caused by mobile ions and by hydrophobic interactions. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 26]
机译:在N-N-亚甲基双丙烯酰胺交联的疏水改性聚电解质的基础上,通过过硫酸铵作为引发剂在70-80℃下于水溶液中进行自由基聚合反应,制备了新型的肥皂水凝胶。聚(二烯丙基胺-co-N,N-十二烷基甲基二烯丙基溴化铵)(PDA-C12),聚(N-甲基二烯丙基-co-N,N-十二烷基甲基二烯丙基溴化铵)(PMDA-C12)均包含具有12个碳原子的疏水侧链。通过将凝胶浸入各种pH和离子强度的缓冲溶液中,研究了这些多皂水凝胶的溶胀行为。发现多皂骨架的结构影响pH依赖性溶胀和溶胀。在适当的缓冲溶液中,由于pH值的变化而引起的溶胀和溶胀重复进行,因此溶胀过程是可逆的。多元皂凝胶的SEM显微照片表明,网络结构的特征是存在大的开孔或小的闭孔。还研究了多皂凝胶在电场中的刺激响应。在接触电场中,在凝胶的阳极侧观察到溶胀。在非接触电场中,凝胶向阳极弯曲。当施加更高的电势时,凝胶会随着时间的流逝而回复原来的形状并向阴极弯曲。凝胶的这些特性与由流动离子和疏水相互作用引起的渗透压变化有关。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:26]

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