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Selenopentathionic and Telluropentathionic Acids as Precursors for Formation of Semiconducting Layers on the Surface of Polyamide

机译:硒代戊四酸和碲戊五酸作为在聚酰胺表面上形成半导体层的前体

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The layers of copper chalcogenides, which were formed on the surface of semihydrophilic polymer—polyamide 6 (PA) using monoselenopentathionicH2SeS4O6and monotelluropentathionicH2TeS4O6acids as precursors of chalcogens, were characterized. Fourier transform infrared (FT-IR) and UV spectroscopy were used to monitor the effect of chalcogens on the changes in structure of PA corresponding to the concentration of the precursor's solution and an exposure time. The IR spectra of modified PA were completely different from that of the initial PA. Further interaction of chalcogenized PA with copper (II/I) salt solution leads to the formation ofCuxS,CuxSe,CuxTe,and mixed –CuxS–CuySeandCuxS–CuyTelayers which have different electric transport properties. The surface properties of PA after treatment are studied using AFM and XRD. The electrical resistances of layers with various composition formed over a wide concentration range 0.01–0.5mol?dm?3of precursor's solution were measured. Variation in the conductivity of layers of Cu–Se–S and Cu–Te–S on the surface of PA shows an evident increase with the increasing of the mass fraction of selenium or tellurium.
机译:表征了在半亲水性聚合物聚酰胺6(PA)的表面上形成的硫属元素化物铜层,其使用单硒代戊二酸H2SeS4O6和单卤代五氟代H2TeS4O6酸作为硫族元素的前体。傅里叶变换红外(FT-IR)和紫外光谱用于监测硫族元素对PA结构变化的影响,该变化对应于前体溶液的浓度和暴露时间。改性PA的红外光谱与初始PA完全不同。硫属元素化的PA与铜(II / I)盐溶液的进一步相互作用导致形成CuxS,CuxSe,CuxTe以及具有不同电传输特性的混合–CuxS–CuySe和CuxS–CuyTelayer。使用AFM和XRD研究了处理后的PA的表面性质。测量了在前体溶液的0.01-0.5mol?dm?3的宽浓度范围内形成的具有各种组成的层的电阻。随着硒或碲质量分数的增加,PA表面的Cu-Se-S和Cu-Te-S层的电导率变化显示出明显的增加。

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