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Poly(3,4-ethylenedioxythiophene): Dextran sulfate (PEDOT: DS) - A highly processable conductive organic biopolymer

机译:聚(3,4-乙撑二氧噻吩):硫酸葡聚糖(PEDOT:DS)-一种高度可加工的导电有机生物聚合物

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摘要

A novel water-dispersible conducting polymer analogous to poly(3,4-dioxythiophene):polystyrene sulfonate (PEDOT:PSS) has been chemically synthesized in a single reaction in high yield. PEDOT:DS, a new member of the polythiophene family, is composed of a complex between PEDOT and the sulfonated polysaccharide polyanion dextran sulfate. Drop-cast films of aqueous suspensions of the material display a native conductivity of up to 7 ± 1 S cm-1, increasing to 20 ± 2 S cm-1 after treatment with ethylene glycol and thermal annealing. Mass ratios of the precursors NaDS and EDOT were varied from 5:1 to 2:1 and a decrease in the NaDS:EDOT ratio produces tougher, less hygroscopic films of higher conductivity. Ultraviolet-visible spectroelectrochemistry yields spectra typical of PEDOT complexes. Cyclic voltammetry reveals that PEDOT:DS is electrochemically active from -1.0 to 0.8V vs. Ag/Ag+ in acetonitrile, with similar characteristics to PEDOT:PSS. Water dispersions of PEDOT:DS are successfully processed by drop casting, spray coating, inkjet printing and extrusion printing. Furthermore, laser etching of dried films allows the creation of patterns with excellent definition. To assess the cytotoxicity of PEDOT:DS, L-929 cells were cultured with a polymer complex concentration range of 0.002 to 0.2 g l-1 in cell culture medium. No significant difference is found between the proliferation rates of L-929 cells exposed to PEDOT:DS and those in plain medium after 96h. However, PEDOT:PSS shows around 25% less cell growth after 4days, even at the lowest concentration. Taken together, these results suggest PEDOT:DS has exceptional potential as an electromaterial for the biointerface.
机译:一种新型的水分散型导电聚合物,类似于聚(3,4-二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS),可以在一个反应​​中以高收率化学合成。 PEDOT:DS是聚噻吩家族的新成员,由PEDOT和磺化多糖聚阴离子葡聚糖硫酸盐之间的复合物组成。该材料的水悬浮液的滴铸膜显示出高达7±1 S cm-1的固有电导率,在用乙二醇处理并进行热退火后,其电导率增加至20±2 S cm-1。前驱体NaDS和EDOT的质量比从5:1到2:1不等,NaDS:EDOT比的降低会产生更坚硬,更不易吸湿的高电导率薄膜。紫外-可见光谱电化学产生典型的PEDOT配合物的光谱。循环伏安法显示,相对于乙腈中的Ag / Ag +,PEDOT:DS在-1.0V至0.8V范围内具有电化学活性,其特性与PEDOT:PSS相似。通过滴铸,喷涂,喷墨印刷和挤出印刷成功地加工了PEDOT:DS的水分散体。此外,通过对干膜进行激光蚀刻,可以创建具有出色清晰度的图案。为了评估PEDOT:DS的细胞毒性,在细胞培养基中以0.002至0.2 g l-1的聚合物复合物浓度范围培养L-929细胞。暴露于PEDOT:DS的L-929细胞与普通培养基在96h后的增殖速率之间没有发现显着差异。但是,即使在最低浓度下,PEDOT:PSS在4天后仍显示出约25%的细胞生长减少。综上所述,这些结果表明,PEDOT:DS具有作为生物界面电子材料的巨大潜力。

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