首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Alkyl substituents of P,S,N-containing organic ligands influencing the uptake of Au3+ and Pt2+ ions over a hydrophobic hypercrosslinked polymeric sorbent
【24h】

Alkyl substituents of P,S,N-containing organic ligands influencing the uptake of Au3+ and Pt2+ ions over a hydrophobic hypercrosslinked polymeric sorbent

机译:p,s,含N的含N的有机配体的烷基取代基,影响Au3 +和Pt2 +离子的摄取,在疏水性超交联的聚合物吸附剂上

获取原文
获取原文并翻译 | 示例
           

摘要

To increase the uptake efficiency towards Au3+ and Pt2+ ions, a hydrophobic hypercrosslinked polymeric sorbent (Purosorb (TM) PAD600, Purolite (R)) was impregnated with P,S,N-containing organic ligands: diethyldithiophosphoric acid (DEDTP), diisopropyldithiophosphoric acid (DIPDTP), diisobutyldithiophosphoric acid (DIBDTP), and 2-amine-1-methylbenzimidazole (MAB). Two stable polymorphs of 2-amino-lmethylbenzoazolium chloride monohydrate were formed and structurally analyzed by X-ray diffraction. The successful impregnation of organic ligands on the polymeric sorbent was confirmed by SEM, EDS and FTIR spectroscopy. The impregnation of the selected organic ligands significantly increased the uptake efficiency for Au3+ and Pt2+ ions of the polymeric sorbent. The uptake of Au3+ and Pt2+ ions is spontaneous, exothermic and obeys a pseudo-second-order kinetics, suggesting a complex uptake mechanism that includes a precipitation process dominating over both physical adsorption and strong chemical interaction. The highest uptake rates for Au3+ and Pt2+ ions were observed with PAD600-DIPDTP (3.71 mmol g(-1)) and PAD600-MAB (1.57 mmol g(-1)), respectively. The uptake ability of the selected organic ligands is discussed based on their electronic structure and type of alkyl groups, number and nature of donor atoms, hydrophobic and stereochemical parameters, chelate formation, possibility of the formation of poorly soluble compounds, dissociation constant, acid-base properties and synthesis conditions (pH, temperature, concentration, etc.). A complete desorption (>99%) of Au3+ and Pt2+ ions was achieved by introducing 60 mg L-1 of SC(NH2)(2) solution (0.3 M H2SO4). The uptake efficiency of the Au3+ and Pt(2+)ion was decreased by 10% in six successive adsorption-desorption cyclic runs due to the release of the impregnated organic ligands into the aqueous solution. The inexpensive, efficient and recyclable sorbents could be used for the uptake of various noble metals. (C) 2020 Elsevier Ltd. All rights reserved.
机译:为了提高Au3 +和Pt2 +离子的摄取效率,用P,S,含N的有机配体浸渍疏水性高速链接的聚合物吸附剂(PuRORB(TM),嘌呤菌素(R)):二乙基二磷酸(DEDTP),二异丙二磷酸(Dedtp)( DIPDTP),二异丁基二磷酸(DIBDTP)和2-胺-1-甲基双咪唑(MAB)。通过X射线衍射形成并在结构上分析两种稳定的2-氨基-1methylozo中氯酰胺一水合物的多晶型物。通过SEM,EDS和FTIR光谱证实了聚合物吸附剂上的有机配体的成功浸渍。所选有机配体的浸渍显着提高了聚合物吸附剂的Au3 +和Pt2 +离子的摄取效率。 Au3 +和Pt2 +离子的摄取是自发的,放热和遵循伪二阶动力学,表明一种复杂的摄取机制,包括在物理吸附和强化学相互作用上占据沉淀过程。使用PAD600-DIPDTP(3.71mmol G(-1))和PAD600-MAB(1.57mmol G(-1))观察AU3 +和PT2 +离子的最高摄取速率。基于它们的电子结构和供体类型,供体原子的数量和性质,疏水性和立体化学参数,螯合形成,形成差的化合物,解离常数,酸的可能性,讨论所选有机配体的摄取能力。基础性质和合成条件(pH,温度,浓度等)。通过引入60mg(NH 2)(2)溶液(0.3M H 2 SO 4)来实现完全解吸(> 99%)Au3 +和Pt2 +离子。由于浸渍的有机配体的释放到水溶液中,Au3 +和Pt(2+)离子的摄取效率降低了六个连续吸附 - 解吸环循环。廉价,高效和可再循环的吸附剂可用于各种贵金属的摄取。 (c)2020 elestvier有限公司保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号