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(r)GO/TiO 嵌入 HCP(超交联聚合物)多孔纳米复合材料的合成及其增强的光催化应用。

Synthesis and enhanced photocatalytic application of porous nanocomposites of (r)GO/TiO embedded HCP (hyper crosslinked polymer).

机构信息

Department of Chemistry, Faculty of Science, Shahid Chamran University of Ahvaz, Ahvaz, Iran.

出版信息

Photochem Photobiol Sci. 2023 Apr;22(4):837-855. doi: 10.1007/s43630-022-00356-3. Epub 2022 Dec 31.

Abstract

Nanocomposites (r)GO/TiO/hyper crosslinked polymer (HCP) were prepared using ultrasonic-assisted method, and identified by (SEM), (EDS), (TEM), and (XRD) techniques. This study was performed to examine the effect of various operating parameters on photocatalytic degradation of Rhodamine B (Rh.B) over (r)GO/TiO embedded HCP followed by an optimization study using response surface methodology (RSM) based on Box-Behnken design (BBD). The photocatalytic activity of rGO/TiO/polycalix[4]resorcinarene ((r)GTP) was evaluated using the cationic dye Rhodamine B as a pollutant model under solar light (intensity = 850 W/m) between 10 and 12 am, June, Ahvaz, Iran. Response Surface Methodology was adopted for the optimization of degradation parameters viz pH, dye concentration, and nanocomposites dosage and contact time. The optimum values for the maximum Rhodamine B (Rh B) degradation of rGO/TiO/polycalix (rGTP) and GTP were obtained, in which the degradation of rGTP was 100% and the degradation efficiency of GO/TiO/polycalix (GTP) was 70%. ANOVA analysis results demonstrated that irradiation time and nanocomposite mass were the most significant parameters. It was found that rGO/TiO/polycalix[4]resorcinarene (rGTP) nanocomposite displayed the best degradation yield for the dye. The results showed that the rGTP nanocomposite displayed good EIS and CV properties besides being eco-friendly and reusable. It could also show a high capacity for the elimination of the dye in the industrial wastewaters.

摘要

采用超声辅助法制备了纳米复合材料(rGO/TiO/超交联聚合物(HCP),并通过(SEM)、(EDS)、(TEM)和(XRD)技术进行了鉴定。本研究旨在考察不同操作参数对 Rhodamine B(Rh.B)在嵌入 HCP 的 rGO/TiO 上光催化降解的影响,然后采用基于 Box-Behnken 设计(BBD)的响应面法(RSM)进行优化研究。采用阳离子染料 Rhodamine B 作为污染物模型,在伊朗阿瓦兹,6 月,上午 10 点至 12 点,太阳光照强度为 850 W/m²的条件下,评价 rGO/TiO/杯[4]芳烃(rGTP)纳米复合材料的光催化活性。采用响应面法对降解参数 pH 值、染料浓度、纳米复合材料用量和接触时间进行优化。得到了 rGO/TiO/polycalix(rGTP)的最大 Rhodamine B(Rh B)降解的最佳值,其中 rGTP 的降解率为 100%,GO/TiO/polycalix(GTP)的降解效率为 70%。方差分析结果表明,辐照时间和纳米复合材料质量是最重要的参数。结果表明,rGO/TiO/polycalix[4]芳烃(rGTP)纳米复合材料对染料具有最佳的降解效果。结果表明,rGTP 纳米复合材料除了具有环保和可重复使用的特点外,还具有良好的 EIS 和 CV 性能。它还可以显示出在工业废水中消除染料的高容量。

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