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首页> 外文期刊>Journal of Macromolecular Science. Physics >Effect of Solute-Polymer Interactions on Sorption and Diffusion in Polyacrylamide Gels
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Effect of Solute-Polymer Interactions on Sorption and Diffusion in Polyacrylamide Gels

机译:溶质-聚合物相互作用对聚丙烯酰胺凝胶吸附和扩散的影响

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Solute-polymer interactions can exert a large effect on selective sorption and permeation in polyacrylamide (PAAm) gels. In order to investigate this effect, three probe polyelectrolytes, sodium polystyrene sulphonate (PSS), polyvinylpyrrolidone (PVP), and sulfonated polyaniline (SPANI), were chosen as probe species in sorption, release, and permeation experiments in PAAm gels. For PAAm gels with trapped SPANI, FTIR spectroscopy has confirmed that there exists hydrogen-bonding between SPANI and PAAm. In addition, rigid-chain SPANI has an intense tendency to aggregate; it is likely that the effective chains of the PAAm matrices are enwrapped in these aggregates. Hydrogen-bonding and aggregation resulted in that the release kinetics of SPANI from PAAm gels exhibited a remarkable "lag time", as long as 100 h (lag period means that in the initial period there is no detectable SPANI released from PAAm gels.), the releasing rate of SPANI was very slow, and the selective sorption of SPANI in PAAm gels was extremely high. On the other hand, the release and permeation of PVP and PSS through PAAm gels were much faster than SPANI, and the selective sorption were close to unity. From these facts it could be deduced that there is no or only weak interaction between PAAm and PSS (or PVP). Adding of concentrated support electrolyte resulted in decrease of the release rate and a two-magnitude decrease of the calculated diffusion coefficients of PSS; the effect of support electrolyte on release and permeation of PSS was partly attributed to the electrostatic interaction.
机译:溶质-聚合物相互作用可对聚丙烯酰胺(PAAm)凝胶中的选择性吸附和渗透产生很大影响。为了研究这种影响,在PAAm凝胶中的吸附,释放和渗透实验中,选择了三种探针聚电解质,聚苯乙烯磺酸钠(PSS),聚乙烯吡咯烷酮(PVP)和磺化聚苯胺(SPANI)作为探针种类。对于带有SPANI的PAAm凝胶,FTIR光谱已证实SPANI和PAAm之间存在氢键。另外,刚性链SPANI具有强烈的聚集趋势。 PAAm矩阵的有效链可能包裹在这些聚集物中。氢键键合和聚集导致SPANI从PAAm凝胶中释放的动力学表现出显着的“滞后时间”,长达100小时(滞后时间意味着在最初阶段从PAAm凝胶中没有可检测到的SPANI释放), SPANI的释放速度非常慢,并且在PAAm凝胶中SPANI的选择性吸附非常高。另一方面,PVP和PSS通过PAAm凝胶的释放和渗透比SPANI快得多,选择性吸附接近于1。从这些事实可以推断出,PAAm和PSS(或PVP)之间没有或只有很弱的相互作用。添加浓缩的支持电解质会导致释放速率降低,所计算的PSS扩散系数降低2倍;支持电解质对PSS释放和渗透的影响部分归因于静电相互作用。

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