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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Flame-assisted synthesis of nanoscale, amorphous and crystalline, spherical BiVO4 with visible-light photocatalytic activity
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Flame-assisted synthesis of nanoscale, amorphous and crystalline, spherical BiVO4 with visible-light photocatalytic activity

机译:火焰辅助合成具有可见光光催化活性的纳米级,无定形和晶体球形BiVO4

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The synthesis of bismuth vanadate (BiVO4) nanoparticles has drawn considerable attention to their application as a visible-light-driven photocatalyst. Several techniques are addressing the enlargement of surface area, but some of them can cause impurities and lower the performance of the material. In this work, flame spray synthesis technique was used as a simple, easy upscalable technique to produce BiVO4 powders. The effect of process parameters on particle properties such as size, morphology and crystallinity were investigated by several techniques: BET, XRD, DSC, TEM, DRS and ζ potential. Spherical BiVO4 nanoparticles with either amorphous or monoclinic phase-pure crystal structure, along with specific surface areas (SSA) between 10 and 75 m~2g~(-1) were obtained by a setup including an in situ crystallization step at T ≥ 270 °C on the powder collection site, sometimes followed by a mild or severe annealing post-treatment. Traditional synthesis routes usually require such annealing post-treatment which implies considerable loss of SSA. The photocatalytic activity of the as-prepared powders was investigated by the degradation of the cationic dye methylene blue (MB). N-demethylation of the dye was clearly identified as one of the degradation pathways, while ring cleavage was only observed with crystalline samples. Crystallinity and SSA were crucial parameters for the photocatalytic activity of different samples of BiVO4 depending on the pH of the solutions. The control of these two parameters during the synthesis of BiVO4 qualifies this method for a potential large scale production.
机译:钒酸铋(BiVO4)纳米颗粒的合成引起了人们对于它们作为可见光驱动的光催化剂的广泛关注。有几种技术正在解决表面积增加的问题,但是其中一些会导致杂质并降低材料的性能。在这项工作中,使用火焰喷涂合成技术作为一种简单,易于升级的技术来生产BiVO4粉末。通过多种技术研究了工艺参数对颗粒性质(如大小,形态和结晶度)的影响:BET,XRD,DSC,TEM,DRS和ζ电位。通过包括在T≥270°的原位结晶步骤在内的设置,获得了具有非晶或单斜晶相纯晶体结构的球形BiVO4纳米颗粒,以及在10至75 m〜2g〜(-1)之间的比表面积(SSA)。 C在粉末收集部位,有时在进行轻度或重度退火后处理。传统的合成路线通常需要进行这种退火后处理,这意味着SSA的大量损失。通过降解阳离子染料亚甲基蓝(MB)来研究所制备粉末的光催化活性。染料的N-去甲基化被明确确定为降解途径之一,而环裂解仅在结晶样品中观察到。结晶度和SSA是BiVO4不同样品的光催化活性的关键参数,具体取决于溶液的pH值。在BiVO4的合成过程中对这两个参数的控制使该方法有可能用于大规模生产。

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