FABRICATION OF NANO-STRUCTURED SURFACES BY FINE TUNING OF DEPOSITION PARAMETERS IN CHITOSAN/PSS POLYELECTROLYTE MULTILAYERS

Jissy Mathew
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Abstract

The fabrication of chitosan/polystyrene sulfonate (CHI)/(PSS) polyelectrolyte multilayer on different polymeric supports (polyether sulfone, polycarbonate and nylon), is discussed in the present work. The permeation of model protein BSA through these multilayer membranes was carried out under ultrafiltration conditions. Different multilayer systems were prepared by varying the parameters such as nature of the polymeric support, pH and molecular weight of polyelectrolyte. Build up of multilayers on polymeric support was monitored by measuring area under the sulfonate peak at 1033 cm-1 in the FTIR spectrum. No appreciable rejection of BSA was observed when CHI/PSS multilayers were fabricated on polycarbonate and nylon supports even after 15 bilayer coating. When multilayers were fabricated on polyether sulfone membranes, more than 90% rejection of BSA was observed with 5 bilayer coated membrane. This study reveals that pH and molecular weight of the polyelectrolyte has decisive role in the multilayer build up.
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精细调整壳聚糖/ pss聚电解质多层膜沉积参数制备纳米结构表面
本文讨论了壳聚糖/聚苯磺酸(CHI)/聚电解质(PSS)多层膜在不同聚合物载体(聚醚砜、聚碳酸酯和尼龙)上的制备。模型蛋白BSA在超滤条件下通过这些多层膜进行渗透。通过改变聚合物载体的性质、pH和聚电解质的分子量等参数,制备了不同的多层体系。通过测量FTIR光谱中1033 cm-1处磺酸盐峰下的面积来监测聚合物载体上多层膜的形成。在聚碳酸酯和尼龙支架上制备CHI/PSS多层膜时,即使经过15层双层涂层,也没有观察到明显的BSA排斥现象。在聚醚砜膜上制备多层膜时,5层双层膜对BSA的去除率达到90%以上。研究表明,聚电解质的pH值和分子量对多层膜的形成起决定性作用。
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