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Influence of pH Value and Precipitant on Zn_2SnO_4 Formation Via Co-precipitation Method

机译:pH值和沉淀剂对通过共沉淀法对Zn_2SnO_4形成的影响

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Nanorod-shaped zinc stannate Zn_2SnO_4 (ZTO) with great photocatalytic activity was successfully synthesized via a co-precipitation method. In this paper, a strong base (NaOH) and a weak base (Na_2CO_3) are adopted as precipitants in order to form the precursor precipitate. The titration endpoints are fixed at pH6, pH8, and pH10 in order to adjust the solution precipitant quantity. Dependent variables above were not seen in other research before. X-ray diffraction (XRD) and transmission electron microscopy (TEM) results show that the powders synthesized were ZTO nano-particles. Photocatalytic activity of the powders was measured utilizing a photocatalytic degradation reaction with methylene blue (MB) solution. The smallest particles were obtained by utilizing NaOH as a precipitant and adjusting pH to 6. Based on TEM images, the ZTO had nano-rod particle morphology. However, when precipitant Na_2CO_3 was utilized, particles agglomerated together, reducing specific surface area. Hence, the former sample shows better photocatalytic activity than the latter one. Consequently, powders titrated to pH6 by precipitant NaOH and calcined for 1 hour will form partly nano-rod particles with slight agglomeration, increasing the specific surface area of ZTO and bringing about the best photocatalytic characteristics.
机译:通过共沉淀法成功地合成了具有很大的光催化活性的纳米棒状锌Zn_2SnO_4(ZTO)。本文采用强碱(NaOH)和弱碱(Na_2CO_3)作为沉淀剂,以形成前体沉淀物。滴定端点在pH6,pH8和pH10处固定,以调节溶液沉淀物量。之前的其他研究中没有看到依赖变量。 X射线衍射(XRD)和透射电子显微镜(TEM)结果表明,合成的粉末是ZTO纳米颗粒。利用与亚甲基蓝(MB)溶液的光催化降解反应测量粉末的光催化活性。通过利用NaOH作为沉淀剂来获得最小颗粒并基于TEM图像调节pH至6. ZtO具有纳米棒颗粒形态。然而,当使用沉淀剂Na_2CO_3时,颗粒聚集在一起,减少比表面积。因此,前一种样品显示比后者更好的光催化活性。因此,通过沉淀剂NaOH滴定至pH6并煅烧1小时的粉末将部分纳米棒颗粒具有轻微附聚,增加ZTO的比表面积并带来最佳的光催化特性。

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