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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Host-guest assembly of ligand systems for metal ion complexation. Synergistic solvent extraction of copper(II) and silver(I) by 1,4,8,11-tetrabenzyl-1,4,8,11-tetraazacyclodecane in combination with carboxylic acids
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Host-guest assembly of ligand systems for metal ion complexation. Synergistic solvent extraction of copper(II) and silver(I) by 1,4,8,11-tetrabenzyl-1,4,8,11-tetraazacyclodecane in combination with carboxylic acids

机译:用于金属离子络合的配体系统的主客体组装。 1,4,8,11-四苄基-1,4,8,11-四氮杂环癸烷与羧酸的协同溶剂萃取铜(II)和银(I)

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摘要

Host - guest formation between 1,4,8,11-tetrabenzyl-1,4,8,11-tetraazacyclodecane ( 1) and lipophilic organic carboxylic acids in chloroform has been investigated and the effect of such ligand assembly on the solvent extraction of copper(II) and silver( I) has been probed. NMR titration experiments in the absence of a metal ion confirm the formation of weak 1 : 1 and 1 : 2 ( macrocycle : carboxylic acid) assemblies in CDCl3 between 1 and palmitic ( hexadecanoic) acid or 4-tert-butylbenzoic acid while difunctional salicylic acid showed a 1 : 2 interaction that is somewhat stronger. The interaction between the former two acids and the tetra-N-benzylated macrocycle is significantly less than that reported previously for its non-substituted parent, cyclam; a result that likely reflects the presence of the less-basic, more sterically hindered tertiary nitrogens in 1 relative to the secondary nitrogens present in cyclam. Carboxylic acid-containing assemblies of this type have been used as extractants in a series of solvent extraction (water/chloroform) experiments. From both previous observations as well as from entropy considerations, it was anticipated that the use of a host - guest assembly of the above type for metal-ion complexation might contribute to enhanced metal ion binding ( and concomitant enhanced metal ion extraction). Such behaviour is postulated to arise from the components of the coordination sphere being, at least in part, assembled for complex formation. In accord with this, the use of the ligand assembly involving palmitic acid/macrocycle 1 was found to lead to enhanced ( synergistic) extraction of copper( II) at a metal ion concentration of 10(-3) mol dm(-3) while, for silver( I), synergism was somewhat marginal at this concentration but was clearly apparent under related conditions when the silver concentration was reduced to 10(-4) mol dm(-3). Similar behaviour towards silver was also observed when 4-tert-butylbenzoic acid was substituted for palmitic acid, while the use of salicylic acid resulted in enhanced ( synergistic) extraction at both metal ion concentrations.
机译:研究了1,4,8,11-四苄基-1,4,8,11-四氮杂环癸烷(1)与亲脂性有机羧酸在氯仿中的主体形成客体,并研究了这种配体组装对铜溶剂萃取的影响(II)和银(I)已被探测。在没有金属离子的情况下进行的NMR滴定实验证实了CDCl3中1和棕榈酸(十六烷酸)或4-叔丁基苯甲酸之间形成弱的1:1和1:2(大环:羧酸)组装体,而双官能水杨酸显示出1:2的交互作用,该交互作用更强。前两种酸与四-N-苄基大环化合物之间的相互作用显着小于先前报道的未取代母体环素的相互作用。这一结果很可能反映了相对于cyclam中存在的仲氮而言,存在的1个碱度较低,空间位阻较大的叔氮的存在。在一系列溶剂萃取(水/氯仿)实验中,这种含羧酸的组合物已被用作萃取剂。从先前的观察以及从熵的考虑,可以预期使用上述类型的主体-客体组装体进行金属离子络合可能有助于增强金属离子结合(以及随之增强的金属离子提取)。推测这种行为是由于至少部分地组装成复杂结构的协调领域的组件引起的。与此相符的是,发现使用涉及棕榈酸/大环化合物1的配体组件可在金属离子浓度为10(-3)mol dm(-3)的同时增强(协同)萃取铜(II)。 ,对于银(I),在该浓度下协同作用有些微,但在相关条件下,当银浓度降低至10(-4)mol dm(-3)时,协同作用显而易见。当用4-叔丁基苯甲酸代替棕榈酸时,也观察到了类似的银行为,而使用水杨酸在两种金属离子浓度下均能提高(协同作用)萃取。

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