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首页> 外文期刊>Ultrasonics sonochemistry >Sonochemical-assisted synthesis of pure Dy2ZnMnO6 nanoparticles as a novel double perovskite and study of photocatalytic performance for wastewater treatment
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Sonochemical-assisted synthesis of pure Dy2ZnMnO6 nanoparticles as a novel double perovskite and study of photocatalytic performance for wastewater treatment

机译:纯DY2ZNMNO6纳米粒子的纯化学辅助合成作为一种新型钙钛矿及污水处理光催化性能研究

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Herein, successful synthesis of pure Dy2ZnMnO6 nanoparticles as a new double perovskite was reported. The samples were prepared using various base and surfactants under ultrasound waves (30 W and 20 kHz). The effects of base type and surfactant type as effective parameters on morphology and size of products and the roles of calcination temperature and sonication as operative procedures on purity of products were investigated. According to the results tepa was chosen as favorite base to produce the smallest particles with the most homogeneity and T >= 900 degrees C was considered as desirable calcination temperature for synthesis of pure product. It seemed that high temperature of ultrasound waves can decrease the required calcination temperature, so facilitates the achievement of pure product. Moreover, photocatalytic performance of the prepared product was examined by decolorization of three dyes including Eriochrome Black T, Methyl orange and Methyl violet under UV irradiation. The most and the least percent of degradation were assigned to Methyl violet (90.44%) and Methyl orange (48.39%), respectively. Paramagnetic property of this product was considered as the other advantage for its photocatalytic performance because of it can be easily separated by magnetic field and recycles again.
机译:这里,报道了作为新的双钙钛矿的纯Dy2ZnMNO6纳米颗粒的成功合成。在超声波(30W和20kHz下)使用各种基础和表面活性剂制备样品。研究了基型和表面活性剂类型作为产品形态和大小的有效参数及煅烧温度和超声的作用,作为产品纯度的纯度的程序。根据结果​​,TEPA被选择为最喜欢的碱,以产生最小均匀性的最小颗粒,并且T> = 900℃被认为是合成纯产品的理想煅烧温度。似乎高温的超声波可以降低所需的煅烧温度,因此促进了纯产品的实现。此外,通过在UV照射下,通过脱色三种染料,通过脱色三种染料脱色,检查制备的产品的光催化性能。将最多的降解百分比分别分别分配给甲基紫(90.44%)和甲基橙(48.39%)。该产品的顺磁性被认为是其光催化性能的另一个优点,因为它可以通过磁场容易地分离并再循环。

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