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首页> 外文期刊>The Science of the Total Environment >H_2O_2-assisted photoelectrocatalytic degradation of Mitoxantrone using CuO nanostructured films: Identification of by-products and toxicity
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H_2O_2-assisted photoelectrocatalytic degradation of Mitoxantrone using CuO nanostructured films: Identification of by-products and toxicity

机译:H_2O_2辅助的CuO纳米结构薄膜对米托蒽醌的光电催化降解:副产物和毒性的鉴定

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CuO nanostructured thin films supported on silicon with 6.5 cm(2) area (geometric area greater than the studies reported in the literature) were synthesized by a chemical bath deposition technique. The electrodes were characterized by MEV, XRD, XPS, contact angle, cyclic voltammetry and electrochemical impedance spectroscopy analyses. To evaluate the photoelectrochemical properties of the CuO films, photocurrent-voltage measurements were performed using linear voltammetry. The catalytic activities of CuO nanostructures were evaluated by monitoring photodegradation of Mitoxantrone (MTX) under UV-A light irradiation. The method of photoelectrocatalysis (PEC), applying a voltage of 1.5 V and assisted by adding H2O2, was undertaken. To the best of our knowledge, no studies on the degradation of anticancer agents using PEC process have been found in the literature. For comparison purposes, experiments were performed under the same conditions by assisted pholocatalysis (PC) with H2O2 and direct photolysis. CuO deposits consist of a needle-like morphology. The presence of CuO in the tenorite phase was evidenced by XRD and the XPS spectra showed the presence of copper(II) oxide. The increase in current under illumination shows that CuO exhibits photoactivity. The PEC system showed a 75% level of MIX degradation, while the level achieved using PC was 50%. Under UV-A light alone only 3% removal was obtained after 180 min. Up to 10 by-products were identified by chromatography-mass spectrometry (LC-MS) with m/z values ranging between 521 and 285 and a plausible degradation route has been proposed. It is worth mentioning that 9 by-products identified in this work, were not found in the literature in other studies of degradation or products generated as metabolites. The toxicity tests of MIX before and after PEC treatment with Anemia Salina and Ailium cepa showed a decrease in the acute toxicity of the medium as the antineoplastic was degraded. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过化学浴沉积技术合成了以6.5 cm(2)面积(比文献中报道的研究更大的几何面积)支撑在硅上的CuO纳米结构薄膜。通过MEV,XRD,XPS,接触角,循环伏安法和电化学阻抗谱分析来表征电极。为了评估CuO膜的光电化学性质,使用线性伏安法进行光电流-电压测量。通过监测在紫外线-A光照射下米托蒽醌(MTX)的光降解来评估CuO纳米结构的催化活性。进行了施加1.5 V电压并加入H2O2辅助的光电催化(PEC)方法。据我们所知,文献中尚未发现使用PEC法降解抗癌药的研究。为了进行比较,在相同的条件下通过辅助的H2O2光催化催化(PC)和直接光解进行了实验。 CuO沉积物具有针状形态。 X射线衍射证实了锰矿相中CuO的存在,而XPS光谱表明氧化铜(II)的存在。在照明下电流的增加表明CuO表现出光活性。 PEC系统显示MIX降解水平为75%,而使用PC达到的水平为50%。在单独的UV-A光下,180分钟后仅获得3%的去除率。通过色谱-质谱法(LC-MS)鉴定出多达10种副产物,其m / z值介于521和285之间,并提出了可行的降解途径。值得一提的是,这项工作中鉴定出的9种副产物,在其他关于降解或代谢产物的研究中均未发现。在用贫血性盐碱和头皮il进行PEC治疗之前和之后MIX的毒性试验表明,随着抗肿瘤药物的降解,培养基的急性毒性降低。 (C)2018 Elsevier B.V.保留所有权利。

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