Ditopic Extractants to Separate Palladium(II) and Platinum(IV) Chloridometalates via Inner or Outer Sphere Binding

IF 1.8 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
A. Wilson, R. A. Grant, Ross J. Gordon, J. Love, C. Morrison, Kirstian J. Macruary, G. Nichol, P. Tasker
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引用次数: 1

Abstract

ABSTRACT New thioetheramide ligands (L, PhS(CH2)nCONRR’) co-extract Pd(II) and Pt(IV) from acidic chloride solutions. The Pd is transferred to a water-immiscible phase as a [Pd(L)2Cl2] complex with thioether groups in the inner sphere whilst Pt is extracted in an outer-sphere assembly, [(LH)2·PtCl6], containing protonated reagent molecules LH+ that charge-balance the chloridoplatinate dianion, [PtCl6]2-. The much higher kinetic and thermodynamic stability of the Pd(II) complex makes it possible to strip the Pt into a weakly acidic aqueous phase before recovering the Pd by back-extraction into aqueous ammonia to form [Pd(NH3)4]Cl2, thereby separating the two elements. An alkyl spacer group with two methylene units between the thioether (S) and amide (C) atoms is a stronger extractant for both metals than those with one or three methylene units. The extractants reject trianionic chloridometalates with higher hydration energies such as [IrCl6]3-. X-ray structures of two [Pd(L)2Cl2] complexes (L, PhSCH2CONH-n-C4H9 or PhS(CH2)2CONH-n-C4H9) have planar coordination with a transarrangement of the thioether groups and geometries very similar to those predicted by DFT calculations. These calculations show that addition of a proton to the proligands L generates a pseudochelate with the added H+ located between the S atom and the carbonyl O atom. In contrast to related ether- and amino-amide extractants, this pseudochelate ring is broken in the [(LH)2.PtCl6] assemblies formed by the thioetheramides and the OH+ and NH units make the close contacts to the PtCl6 2- ion.
通过内球或外球结合分离氯金属酸钯(II)和铂(IV)的双萃剂
摘要:新型硫醚酰胺配体(L,PhS(CH2)nCONRR')从酸性氯化物溶液中共萃取Pd(II)和Pt(IV)。Pd以[Pd(L)2Cl2]络合物的形式转移到水不混溶相中,该络合物在内部球体中具有硫醚基团,而Pt在外部球体组件[(LH)2·PtCl6]中被提取,该组件包含质子化试剂分子LH+,该分子电荷平衡氯代铂酸二阴离子[PtCl6]2-。Pd(II)络合物更高的动力学和热力学稳定性使得在通过反萃取到氨水中回收Pd以形成[Pd(NH3)4]Cl2之前将Pt剥离成弱酸性水相成为可能,从而分离这两种元素。在硫醚(S)和酰胺(C)原子之间具有两个亚甲基单元的烷基间隔基对这两种金属都是比具有一个或三个亚甲基单元更强的萃取剂。萃取剂排斥具有较高水合能的三元氯代金属盐,如[IrCl6]3-。两个[Pd(L)2Cl2]配合物(L,PhSCH2CONH-n-C4H9或PhS(CH2)2CONH-n-C4H9)的X射线结构具有与硫醚基团的转移排列非常相似的平面配位,并且几何结构与DFT计算预测的非常相似。这些计算表明,在前配体L中添加质子会产生一个赝helate,其中添加的H+位于S原子和羰基O原子之间。与相关的醚酰胺和氨基酰胺萃取剂相比,这种伪螯合环在硫醚酰胺形成的[(LH)2.PtCl6]组装体中被破坏,OH+和NH单元与PtCl6 2-离子紧密接触。
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来源期刊
CiteScore
4.40
自引率
5.00%
发文量
15
审稿时长
8.4 months
期刊介绍: Solvent Extraction and Ion Exchange is an international journal that publishes original research papers, reviews, and notes that address all aspects of solvent extraction, ion exchange, and closely related methods involving, for example, liquid membranes, extraction chromatography, supercritical fluids, ionic liquids, microfluidics, and adsorption. We welcome submissions that look at: The underlying principles in solvent extraction and ion exchange; Solvent extraction and ion exchange process development; New materials or reagents, their syntheses and properties; Computational methods of molecular design and simulation; Advances in equipment, fluid dynamics, and engineering; Interfacial phenomena, kinetics, and coalescence; Spectroscopic and diffraction analysis of structure and dynamics; Host-guest chemistry, ion receptors, and molecular recognition.
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