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Saloplastic Macroporous Polyelectrolyte Complexes: Cartilage Mimics

机译:Saloplastic大孔聚电解质复合物:软骨模拟物。

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摘要

Complexes of sodium poly(4-styrenesulfonate) (NaPSS) and poly(diallyldimethylammonium chloride) (PDADMAC) were formed on mixing equimolar solutions in high salt concentration. Under ultracentrifugal fields, the complex precipitates were transformed into compact polyelectrolyte complexes (CoPECs), which showed extensive porosity. The mechanical properties of CoPECS make them attractive for bioimplants and tissue engineering applications. Free NaPSS chains in the closed pores of CoPECs create excess osmotic pressure, which controls the pore size and contributes to the mechanical resistance of the material. The mechanical properties of CoPECs, modulated by the ionic strength of the doping medium, were studied by uniaxial tensile testing and the stress−strain data were fit to a three-element Maxwell model which revealed at least two regimes of stress relaxation.
机译:在高盐浓度下混合等摩尔溶液形成聚(4-苯乙烯磺酸钠)(NaPSS)和聚(二烯丙基二甲基氯化铵)(PDADMAC)的配合物。在超速离心场下,复合物沉淀物转化为致密的聚电解质复合物(CoPECs),显示出广泛的孔隙度。 CoPECS的机械性能使其对生物植入物和组织工程应用具有吸引力。 CoPEC封闭孔中的游离NaPSS链会产生过量的渗透压,从而控制孔的大小并有助于材料的机械阻力。通过单轴拉伸试验研究了受掺杂介质离子强度调节的CoPEC的力学性能,并将应力应变数据拟合到三元素的麦克斯韦(Maxwell)模型,该模型揭示了至少两种应力松弛方式。

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