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首页> 外文期刊>Journal of Colloid and Interface Science >Formation of copper(II) thiocyanato and cadmium(II) iodo complexes in micelles of nonionic surfactants with varying poly(ethylene oxide) chain lengths
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Formation of copper(II) thiocyanato and cadmium(II) iodo complexes in micelles of nonionic surfactants with varying poly(ethylene oxide) chain lengths

机译:聚(环氧乙烷)链长不同的非离子表面活性剂胶束中硫氰酸铜(II)和碘镉镉(II)配合物的形成

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Formation of copper(II) thiocyanato and cadminum(II) iodo complexes in micelles of poly(ethylene oxide) (PEO)-type nonionic surfactants with varying PEO chain lengths of 9.5 (Triton X-100), 30 (Triton X-305), and 40 (Triton X-405) has been studied by titration spectrophotometry and calorimetry at 298 K. In a given surfactant solution, all data obtained were analyzed by assuming formation of ternary complexes MXnYm(2-n)+ (M = Cu-II,Cd-II; X =SCN-, I-; Y = surfactant), and the complexes thus form in aqueous phase (m = 0) or in micelles (m = 1). In the (CuSCN-)-S-II system, spectrophotometric data obtained by varying concentrations of the surfactant can be explained well in terms of formation of Cu(NCS)(2)Y in micelles and Cu(NCS)(+) and Cu(NCS)(2) in an aqueous phase, and it turned out that formation constant of Cu(NCS)(2)Y increases with increasing PEO chain length. In the Cd-II-I- system, the formation of CdI3Y- and CdI4Y2- is concluded in micelles, and that of CdI+, CdI3-, and CdI42- in an aqueous phase. Interestingly, formation enthalpies of CdI3Y- and CdI4Y2- become significantly less negative with increasing PEO chain length. This suggests that transfer of the complexes from aqueous solution to a hydrophobic octylphenyl (OP) moiety in micelles is significantly more exothermic than that to a hydrophilic PEO one. Thermodynamic parameters of transfer of CdI3- and CdI42- from aqueous solution to the OP and PEO moieties of micelles have been evaluated, (C) 2000 Academic Press. [References: 22]
机译:在具有9.5(Triton X-100),30(Triton X-305)的PEO链长不同的聚(环氧乙烷)(PEO)型非离子表面活性剂胶束中形成硫氰酸铜(II)和铜(II)碘配合物,并且已经在298 K下通过滴定分光光度法和量热法研究了40(Triton X-405)。在给定的表面活性剂溶液中,假设三元络合物MXnYm(2-n)+(M = Cu- II,Cd-II; X = SCN-,I-; Y =表面活性剂),因此在水相(m = 0)或胶束(m = 1)中形成络合物。在(CuSCN-)-S-II系统中,通过改变胶束中Cu(NCS)(2)Y和Cu(NCS)(+)和Cu的形成,可以很好地解释通过改变表面活性剂浓度获得的分光光度数据(NCS)(2)在水相中的结果表明,Cu(NCS)(2)Y的形成常数随PEO链长的增加而增加。在Cd-II-I-系统中,CdI3Y-和CdI4Y2-的形成是在胶束中完成的,CdI +,CdI3-和CdI42-的形成是在水相中完成的。有趣的是,随着PEO链长度的增加,CdI3Y-和CdI4Y2-的形成焓变得越来越小。这表明络合物从水溶液到胶束中的疏水性辛基苯基(OP)部分的转移比向亲水性PEO转移的放热明显更多。 CdI3-和CdI42-从水溶液到胶束的OP和PEO部分转移的热力学参数已得到评估,(C)2000 Academic Press。 [参考:22]

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