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Electrochemical fabrication of two-dimensional copper oxide nanosheets on stainless steel as a fiber coating for highly sensitive solid-phase microextraction of ultraviolet filters

机译:在不锈钢上作为纤维涂层的二维氧化铜纳米片的电化学制备,用于紫外线过滤器的高灵敏度固相微萃取

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A novel two-dimensional copper oxide (CuO) nanosheet coated fiber was directly fabricated on the surface of a piece of etched stainless steel wire using bulk electrolysis with coulometry (BE) for solid-phase microextraction (SPME). The field-emission scanning electron micrograph showed that the CuO nanosheet coated fiber possessed uniform nanostructures with a size of about 200 nm and a thickness of 30–45 nm. The fabricated CuO coated fiber was investigated for concentration and determination of trace phthalate esters (PAEs), polychlorinated biphenyls (PCBs), polycyclic aromatic hydrocarbons (PAHs) and ultraviolet (UV) filters coupled to high-performance liquid chromatography with UV detection (HPLC-UV). It was found that the fiber exhibited better extraction performance for UV filters. The main affecting conditions were investigated and optimized for SPME performance. Under the optimized extraction conditions, the proposed method showed good linearity between 0.10 and 400 μg L?1 with the corresponding coefficients in the range of 0.9950–0.9977. The limits of detection ranged from 0.025 to 0.051 μg L?1. The relative standard deviation for fiber-to-fiber reproducibility of five fabricated fibers was less than 8.3%. The proposed SPME-HPLC-UV method was successfully applied for the concentration and determination of trace UV filters in the Yellow River and wastewater with recoveries from 94.0% to 104.3%.
机译:使用固相微萃取(SPME)的库仑法(BE)进行本体电解,将一条新颖的二维氧化铜(CuO)纳米片涂覆的纤维直接制造在一条蚀刻的不锈钢丝表面上。场发射扫描电子显微照片显示,包覆有CuO纳米片的纤维具有均匀的纳米结构,尺寸约为200 nm,厚度为30-45 nm。研究了制备的CuO包覆纤维的浓度和痕量邻苯二甲酸酯(PAE),多氯联苯(PCB),多环芳烃(PAH)和紫外线(UV)过滤器的浓度和含量,并结合了具有紫外检测(HPLC-紫外线)。发现该纤维对UV滤光剂表现出更好的提取性能。研究了主要影响条件,并针对SPME性能进行了优化。在最佳提取条件下,该方法在0.10和400μgL?1之间显示出良好的线性,相应的系数在0.9950–0.9977范围内。检出限为0.025〜0.051μgL?1。五根人造纤维的纤维到纤维重现性的相对标准偏差小于8.3%。提出的SPME-HPLC-UV方法已成功用于黄河和废水中痕量UV过滤剂的浓缩和测定,回收率为94.0%至104.3%。

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