首页> 外文期刊>Journal of Applied Polymer Science >Application of FTIR spectroscopy for structural characterization of ternary poly(acrylic acid)-metal-poly(vinyl pyrrolidone) complexes
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Application of FTIR spectroscopy for structural characterization of ternary poly(acrylic acid)-metal-poly(vinyl pyrrolidone) complexes

机译:FTIR光谱在三元聚丙烯酸-金属-聚乙烯吡咯烷酮配合物结构表征中的应用

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The FTIR spectroscopic technique was used in the study of ternary polymer-metal complexes containing two polyelectrolytes of opposite charge and metal ions. The structure of the ternary (PAA-Fe3+-pVp) complexes was examined by following the changes in their infrared spectra. It was found that the shapes of the absorption bands of the resultant compounds are influenced by the presence of Fe3+. According to this result it was suggested that two types of structure which differ in the composition are formed, one of which results from the coordination of Fe3+ with PAA-PVP complex and the other is due to the formation of Fe3+ polycarboxylate. Comparison between the spectrum of PAA-PVP complex and those of the compounds resulted from the reaction between the two opposite charged electrolytes, PAA and PVP and each of the divalent metal chlorides NiCl2, CoCl2, CuCl2, and ZnCl2) led to the conclusion that a reaction took place between the divalent transition metal chlorides and the extent of reaction depends on the nature of metal ions and PAA- PVP complex. The FTIR spectra of the precipitate resulted from the mixtures of PAA-PVP and Ni(NO3)(2) or Sr(NO3)(2) were investigated. It was noted that the addition of Ni(NO3)(2) or Sr(NO3)(2) to the mixture of the electrolytes of PAA and PVP provoked appreciable changes in the characteristic spectral features of the complex resulting from the interaction of the metal ions with the polymer-polymer complex. The FTIR spectra of the precipitate resulted from the reaction between CeCl3, ErCl3, and LaCl3 were also investigated. It was concluded that a reaction took place between the rare earth metals and the PPC. This means that ternary polymer-metal-polymer complexes were formed. The extent of changes in the spectral features differs from metal to metal according to the nature of metal ions. (c) 2007 Wiley Periodicals, Inc.
机译:FTIR光谱技术用于研究包含两种带相反电荷和金属离子的聚电解质的三元聚合物-金属配合物。通过跟踪其红外光谱的变化来检查三元(PAA-Fe3 + -pVp)配合物的结构。已经发现,所得化合物的吸收带的形状受Fe 3+的存在的影响。根据该结果,建议形成两种组成不同的结构,一种是由于Fe 3+与PAA-PVP配合物配位而产生的,另一种是由于Fe 3+聚羧酸盐的形成。 PAA-PVP配合物的光谱与化合物的光谱之间的比较是由两种相反的带电电解质PAA和PVP与二价金属氯化物NiCl2,CoCl2,CuCl2和ZnCl2之间的反应引起的。反应发生在二价过渡金属氯化物之间,反应程度取决于金属离子和PAA-PVP配合物的性质。研究了由PAA-PVP和Ni(NO3)(2)或Sr(NO3)(2)的混合物形成的沉淀物的FTIR光谱。有人指出,向PAA和PVP的电解质混合物中添加Ni(NO3)(2)或Sr(NO3)(2)会引起由于金属相互作用而引起的配合物特征光谱特征的明显变化。离子与聚合物-聚合物配合物。还研究了CeCl3,ErCl3和LaCl3之间反应产生的沉淀物的FTIR光谱。结论是,稀土金属与PPC之间发生了反应。这意味着形成了三元聚合物-金属-聚合物复合物。根据金属离子的性质,光谱特征的变化程度因金属而异。 (c)2007年Wiley Periodicals,Inc.

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