首页> 外文期刊>Ultrasonics sonochemistry >Controllable synthesis of (NH4)Fe-2(PO4)(2)(OH)center dot 2H(2)O using two-step route: Ultrasonic-intensified impinging stream pre-treatment followed by hydrothermal treatment
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Controllable synthesis of (NH4)Fe-2(PO4)(2)(OH)center dot 2H(2)O using two-step route: Ultrasonic-intensified impinging stream pre-treatment followed by hydrothermal treatment

机译:(NH4)Fe-2(PO4)(2)(2)(OH)中心点2H(2)o使用两步路线的可控合成:超声波加强撞击流预处理,然后进行水热处理

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摘要

(NH4)Fe-2(PO4)(2)(OH)center dot 2H(2)O samples with different morphology are successfully synthesized via two-step synthesis route - ultrasonic-intensified impinging stream pre-treatment followed by hydrothermal treatment (UIHT) method. The effects of the adoption of ultrasonic-intensified impinging stream pre-treatment, reagent concentration (C), pH value of solution and hydrothermal reaction time (7) on the physical and chemical properties of the synthesised (NH4)Fe-2(PO4)(2)(OH)center dot 2H(2)O composites and FePO4 particles were systematically investigated. Nano-seeds were firstly synthesized using the ultrasonic-intensified T-mixer and these nano-seeds were then transferred into a hydrothermal reactor, heated at 170 degrees C for 4 h. The obtained samples were characterized by utilising XRD, BET, TG-DTA, SEM, TEM, Mastersizer 3000 and FTIR, respectively. The experimental results have indicated that the particle size and morphology of the obtained samples are remarkably affected by the use of ultrasonic-intensified impinging stream pre-treatment, hydrothermal reaction time, reagent concentration, and pH value of solution. When such (NH4)Fe-2(PO4)(2)(OH)center dot 2H(2)O precursor samples were transformed to FePO4 products after sintering at 650 degrees C for 10 h, the SEM images have clearly shown that both the precursor and the final product still retain their monodispersed spherical microstructures with similar particle size of about 3 pm when the samples are synthesised at the optimised condition.
机译:(NH4)Fe-2(PO4)(2)(2)(OH)中心点2H(2)O通过两步合成路线成功合成具有不同形态的样品 - 超声波加强撞击流预处理,然后进行水热处理(UIHT ) 方法。采用超声强化灭火流预处理,试剂浓度(C),溶液和水热反应时间(7)的效果对合成(NH4)Fe-2(PO4)的物理和化学性质(2)(OH)中央点2H(2)o复合材料和FEPO4颗粒被系统地研究。首先使用超声强化的T型混合器合成纳米种子,然后将这些纳米种子转移到水热反应器中,在170℃下加热4小时。通过分别利用XRD,BET,TG-DTA,SEM,TEM,举者3000和FTIR来表征获得的样品。实验结果表明,所获得的样品的粒度和形态通过使用超声波强化的蒸发流预处理,水热反应时间,试剂浓度和溶液的pH值而显着影响。当(NH 4)Fe-2(PO4)(2)(2)(2)(2)(OH)中心点2H(2)O前体样品在烧结到650℃的FEPO4产物10小时后,SEM图像已经清楚地显示出前体和最终产物仍然保持其单分散的球形微结构,当样品在优化条件下合成样品时,粒径为约3μm。

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