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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Liquid-liquid extraction of palladium(II) and gold(III) with N-benzoyl-N ',N '-diethylthiourea and the synthesis of a palladium benzoylthiourea complex
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Liquid-liquid extraction of palladium(II) and gold(III) with N-benzoyl-N ',N '-diethylthiourea and the synthesis of a palladium benzoylthiourea complex

机译:N-苯甲酰基-N',N'-二乙基硫脲液-液萃取钯(II)和金(III)及钯苯甲酰基硫脲配合物的合成

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N-Benzoylthioureas have been reported to form complexes with gold (III) and palladium (II) and other transition metals. In this study, an N-benzoyl-N',N'-diethylthiourea (3f) ligand was used in the solvent extraction of palladium(II) and gold(III) from aqueous chloride media (0.1 mol l(-1) NaCl). The distribution coefficient was determined as a function of both metal concentration in the aqueous phase and extractant concentration in the organic phase. The experimental distribution data were numerically analysed by LETAGROP-DISTR software in order to obtain the thermodynamic model corresponding to the metal extraction. It is found that pH does not affect the metal extraction process in the 1-2 pH range. Synthesis of the palladium benzoyl thiourea complexes was carried out by mixing quantities of metal and ligand solutions in methanol in a 1:2 ratio stoichiometric. Yields of 74 and 80.9% were obtained for the Pd-3c and Pd-3f complexes. In order to confirm the formation of the palladium complexes, NMR, FTIR and MS analyses were performed. From MS analyses a complex stoichiometry 1:2 (metal:ligand) was confirmed. The formation of crystals of palladium N-benzoyl-N',N'-diethylthiourea complex (Pd-3f) in the methanolic solution allows the characterisation of the complex structure by XRD. The resulting structure is described and discussed. Bis(1,1,-diheptadecyl-3-benzoyl-thioureate)palladium(II) (Pd-3c) and bis(1,1,-diheptadecyl-3-benzoyl-thioureate)palladium(II) (Pd-3f) were used as ionophores in polymeric membrane electrodes. Their potentiometric responses to different anionic metal chlorocomplexes are evaluated and discussed taking into consideration the results obtained in the liquid-liquid distribution studies. A nernstian response was only obtained for AuCl4- (PDL=8.8x10(-8)) and PdCl42- (PDL=1.5x10(-4) M) with a selectivity coefficient of K-AuCl 4, PdCl4 2-(pot) = -3.4, calculated taking AuCl4- as being the primary anion. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 31]
机译:据报道,N-苄基硫脲与金(III)和钯(II)以及其他过渡金属形成络合物。在这项研究中,N-苯甲酰基-N',N'-二乙基硫脲(3f)配体用于从氯化物水溶液(0.1 mol l(-1)NaCl)中溶剂萃取钯(II)和金(III) 。确定分布系数作为水相中金属浓度和有机相中萃取剂浓度的函数。用LETAGROP-DISTR软件对实验分布数据进行数值分析,以获得与金属提取相对应的热力学模型。发现pH在1-2pH范围内不影响金属提取过程。钯苯甲酰基硫脲配合物的合成是通过以化学计量比为1:2的比例混合一定量的金属和配体在甲醇中的溶液来进行的。 Pd-3c和Pd-3f复合物的产率分别为74和80.9%。为了确认钯配合物的形成,进行了NMR,FTIR和MS分析。通过MS分析,确认了化学计量比为1:2(金属:配体)。甲醇溶液中钯N-苯甲酰基-N',N'-二乙基硫脲配合物(Pd-3f)的晶体形成可以通过XRD表征配合物结构。描述和讨论了所得的结构。双(1,1,-二十七烷基-3-苯甲酰基-硫脲酸酯)钯(II)(Pd-3c)和双(1,1,-二十七烷基-3-苯甲酰基-硫脲酸酯)钯(II)(Pd-3f)用作聚合物膜电极中的离子载体。考虑到在液-液分布研究中获得的结果,评估和讨论了它们对不同阴离子金属氯配合物的电位响应。仅对于AuCl4-(PDL = 8.8x10(-8)M)和PdCl42-(PDL = 1.5x10(-4)M)获得神经响应,其选择性系数为K-AuCl 4,PdCl4 2-(pot)= -3.4,以AuCl4-为主要阴离子计算。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:31]

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