F. Maarouf, S. Saoiabi, K. Azzaoui, Hind Khalil, M. Khalil, A. Yahyaoui, A. Saoiabi, B. Hammouti, M. Youssoufi, S. Shityakov, O. Hamed, S. Jodeh, Rachid Sabbahi
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引用次数: 1
摘要
采用无机溶胶-凝胶法制备了无定形磷酸铁(FePO4.2H2O)。确定了Fe (III)-H3PO4体系凝胶化的实验条件。采用电位时间滴定法(PTT)和电位质量滴定法(PMT)研究了所得磷酸盐的酸碱表面化学性质。表面电荷随接触时间Q = f(t)的变化,在0至72小时的接触时间范围内进行了检测。用于此目的的悬浮液浓度为0.75,1.25和2.5 g/L。在较低接触时间下,用导数法确定了零电荷点(PZC)和等电点(IEP)。PZC和IEP均为5.4。对合成的FePO4进行t法函数中的Q。2H2O在NaCl和KCl电解质中。在探索的条件下,获得了4.2x10-4 M Na+或K+的最佳表面电荷为40 C。结果表明,合成的磷酸铁是无定形的。
Amorphous Iron Phosphate: Inorganic Sol-Gel Synthesis-Sodium and Potassium Insertion
Amorphous iron phosphate, FePO4.2H2O, was synthesized at ambient temperature using an inorganic sol-gel method coupled with a microwave route. The experimental conditions for the gelling of the Fe (III)-H3PO4 system are defined. Potentiometric Time Titration (PTT) and Potentiometric Mass Titration (PMT) methods were used to investigate the acid-base surface chemistry of obtained phosphate. Variations of surface charge with the contact time, Q = f(t), are examined for time contact ranged from 0 to 72 hours. The concentrations suspensions used for this purpose were 0.75, 1.25, and 2.5 g/L. The point of zero charges (PZC) and isoelectric point (IEP) were defined using the derivative method examining the variations , at lower contact time. A value of 5.4 was obtained for both PZC and IEP. Q in the function of the t method is performed for synthesized FePO4. 2H2O in NaCl and KCl electrolytes. The optimal surface charge of 40 C corresponding to insertion of 4.2x10-4 M of Na+ or K+, is achieved in explored conditions. The results suggest that the synthesized iron phosphate is amorphous.