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Extraction Performance of a Fluorous Phosphate for Zr(IV) from HNO3 Solution: Comparison with Tri-n-Butyl Phosphate

机译:从HNO3溶液中提取氟磷酸盐(IV)的氟磷酸盐的性能:与磷酸三丁基丁酯的比较

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摘要

We compare the extraction performance of new extractant, fluorous phosphate tris(4,4,5,5,6,6,7,7,7-nonafluoroheptyl) phosphate (TFP) in the fluorinated diluent perfluorohexane, for Zr(IV) with a conventional organic extractant, tri-n-butyl phosphate (TBP) in n-octane. It is surprising that fluorinating TBP to TFP improved the extraction performance, as normally fluorinating the hydrocarbon substituents on neutral extractants tends to decrease the extraction strength. We examined the origin of the superior extraction performance of TFP by analyzing the equilibrium of the chemical reaction during the extraction. The equilibrium reaction of Zr(IV) with TFP is , whereas that with TBP is . Phosphorus-31 nuclear magnetic resonance and infrared spectroscopy measurements of TFP and TBP showed similar electron densities at the phosphorus atom and vibration modes of the P=O group, implying similar coordination to Zr(IV). In addition, the concentrations of all components (Zr(IV), HNO3, and water) in the fluorous and organic phases after solvent extraction were evaluated by inductively coupled plasma-mass spectrometry, ion chromatography, and Karl-Fischer titration. The concentrations of water and HNO3 molecules in the fluorous phase become low during the Zr(NO3)(4)(TFP)(3) extraction, indicating that water and HNO3 molecules do not preferentially interact with Zr(NO3)(4)(TFP)(3) in contrast to Zr(NO3)(4)(TBP)(2) in n-octane We speculate that the excellent performance originated from the stability of Zr(NO3)(4)(TFP)(3) in the fluorous phase. Hence, TFP is expected to be used as an alternative extractant to TBP.
机译:我们将新萃取剂,荧光磷酸酯三(4,4,5,5,6,6,6,7,7,7,7-非氟opThepty1)磷酸盐(TFP)的Zr(IV)的磷酸盐(TFP)进行Zr(IV)的提取性能。 N-辛烷中的常规有机萃取剂,三叔丁基磷酸酯(TBP)。令人惊讶的是,氟化TBP至TFP改善提取性能,因为通常氟化中性萃取剂上的烃取代基倾向于降低萃取强度。通过分析萃取过程中化学反应的平衡,我们检查了TFP的卓越提取性能的起源。 Zr(IV)与TFP的平衡反应是,而具有TBP的Zr(IV)是。 TFP和TBP的磷-11核磁共振和红外光谱测量显示P = O基团的磷原子和振动模式下的类似电子密度,暗示与Zr(IV)的相似性。另外,通过电感耦合等离子体质谱,离子色谱法和Karl-Fischer滴定,评估溶剂萃取后氟和有机相中的所有组分(Zr(IV),HNO3和水)的浓度。在Zr(NO 3)(4)(4)(3)萃取期间,流液相中水和HNO3分子的浓度变低,表明水和HNO3分子不优先与Zr(NO 3)(4)(TFP)相互作用(TFP )(3)与正辛烷中的Zr(NO 3)(4)(4)(4)相反,我们推测出来自Zr(NO3)(4)(4)(TFP)(3)的稳定性的优异性能荧光阶段。因此,预计TFP将用作TBP的替代萃取剂。

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