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Alternative synthesis of nitrogen and carbon co-doped TiO2 for removing fluoroquinolone antibiotics in water under visible light

机译:氮气和碳共掺杂TiO2在可见光下除去水中氟喹诺酮抗生素的替代合成

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Nitrogen and carbon co-doped TiO2 nano-catalysts (NCD-TiO2) with visible light activity were prepared using a sol-gel approach involving less chemicals and were evaluated for photocatalytic destruction of two fluoroquinolone antibiotics (ciprofloxacin (CIP) and levofloxacin (LEV)). Nitric acid was used as the reagent of esterification for water formation and the nitrogen precursor, while surfactant Tween 80 was applied as the structure directing agent and the carbon precursor. The synthesis parameters of NCD-TiO2 nanoparticles, including the calcination temperature and nitric acid content, were optimized and the obtained catalysts were characterized by X-ray diffraction (XRD), Raman, porosimetry analysis, high resolution transmission electron microscopy (HR-TEM), X-ray photoelectron spectroscopy (XPS), UV-vis diffuse-reflectance spectrum (UV-vis DRS), photoluminescence (PL), and electron spin resonance (ESR) analysis. NCD-TiO2 prepared with the highest amount of HNO3 and calcined at 430 degrees C (NCD200-430) showed the highest photocatalytic activity under visible light, which was essentially attributed to the larger surface area and the higher content of dopants. The photogenerated holes, instead of hydroxyl radical, and partially superoxide radical were confirmed as the effective oxidation species for CIP and LEV destruction in this work. The high efficiency of NCD-TiO2 under visible light demonstrates the great application potential of such photocatalysts in water treatment for the removal of antibiotics contaminants.
机译:采用溶胶-凝胶法制备了具有可见光活性的氮和碳共掺杂TiO2纳米催化剂(NCD-TiO2),涉及的化学品较少,并对其对两种氟喹诺酮类抗生素(环丙沙星(CIP)和左氧氟沙星(LEV))的光催化破坏进行了评估。以硝酸为酯化试剂生成水和氮前驱体,表面活性剂吐温80为结构导向剂和碳前驱体。优化了NCD-TiO2纳米颗粒的合成参数,包括煅烧温度和硝酸含量,并通过X射线衍射(XRD)、拉曼光谱、孔隙率分析、高分辨率透射电子显微镜(HR-TEM)、X射线光电子能谱(XPS)、紫外-可见漫反射光谱(UV-vis-DRS)对所得催化剂进行了表征,光致发光(PL)和电子自旋共振(ESR)分析。用最高量的HNO3制备并在430摄氏度(NCD200-430)下煅烧的NCD-TiO2在可见光下表现出最高的光催化活性,这主要归因于较大的表面积和较高的掺杂剂含量。光生空穴取代羟基自由基和部分超氧自由基被证实是CIP和LEV破坏的有效氧化物种。NCD-TiO2在可见光下的高效性证明了此类光催化剂在水处理中去除抗生素污染物的巨大应用潜力。

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