首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >TiO2 nanoparticles and C-Nanofibers modified magnetic Fe3O4 nanospheres (TiO2@Fe3O4@C-NF): A multifunctional hybrid material for magnetic solid-phase extraction of ibuprofen and photocatalytic degradation of drug molecules and azo dye
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TiO2 nanoparticles and C-Nanofibers modified magnetic Fe3O4 nanospheres (TiO2@Fe3O4@C-NF): A multifunctional hybrid material for magnetic solid-phase extraction of ibuprofen and photocatalytic degradation of drug molecules and azo dye

机译:TiO2纳米颗粒和C-纳米纤维改性磁FE3O4纳米球(TiO2 @ Fe3O4 @ C-NF):用于磁性固相提取的布洛芬磁共相提取的多功能杂化材料和药物分子的光催化降解和氮杂染料

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摘要

Accurate sensitive analysis of drug ingredient substances in biological, pharmaceutical and environmental samples and removal of drug ingredient substances in environmental samples owngreat importance for sustaining viability. The realization of these processes using a single material offers significant advantages in terms of cost, time and ease of use. In this study, TiO2 nanoparticles and C-Nanofibers modified magnetic Fe3O4 nanospheres (TiO2@Fe3O4@C-NFs) synthesized as a multifunctional material employing a simple hydrothermal synthesis method. This innovative material was exploited in the magnetic solid-phase extraction (MSPE) method for the preconcentration of ibuprofen and photocatalytic degradation of antibiotics, non-steroidal anti-inflammatory drugs (NSAIDs), and azo dye. To our knowledge, no studies have been previously conducted using the same material as magnetic solid-phase extraction adsorbent and magnetically separable photocatalyst. The characterization of TiO2@Fe3O4@C-NFs was carried out by XRD, FE-SEM, EDX and Raman techniques. The main analytical parameters affecting MSPE performance of ibuprofen such as pH, sorbent amount eluent type and volume and sample volume were optimized. The optimum values of the method were determined at the following parameters: pH 4.0, adsorbent amount 150 mg and eluent 2 mL of acetone. Ibuprofen analysis after MSPE was carried out using a high-performance liquid chromatography diode array detection system (HPLC-DAD). The photocatalytic degradation efficiencies of TiO2@Fe3O4@C-NF hybrid material for probe-analytes reached 80-100% and the complete degradation attained within the range of 8-125 min under UV irradiation. Simple preparation, practical isolation from solutions, high efficiency, reproducibility, and sustainability are the main advantages of the TiO2@Fe3O4@C-NFs for MSPE and photocatalytic degradation applications.
机译:精确的生物,药物和环境样品中药物成分物质的敏感分析,并在环境样本中除去药物成分物质,对维持活力的重要性。使用单个材料的实现这些过程在成本,时间和易用性方面具有显着的优势。在该研究中,TiO2纳米颗粒和C-纳米纤维改性磁Fe3O4纳米体(TiO 2 @ Fe3O4 @ C-NFS)合成为使用简单的水热合成方法的多官能材料。这种创新的材料在磁性固相萃取(MSPE)方法中利用了布洛芬的前浓缩,抗生素的光催化降解,非甾体抗炎药(NSAIDs)和偶氮染料。据我们所知,先前没有使用与磁性相 - 相萃取吸附剂和磁性可分离的光催化剂相同的材料进行研究。 TiO2 @ Fe3O4 @ C-NFS的表征由XRD,FE-SEM,EDX和拉曼技术进行。优化了影响布洛芬的MSPE性能的主要分析参数,例如pH,吸附剂量洗脱液类型和体积和样品体积。该方法的最佳值在以下参数下测定:pH 4.0,吸附量150mg和洗脱液2ml丙酮。使用高性能液相色谱二极管阵列检测系统(HPLC-DAD)进行MSPE后的布洛芬分析。用于探针分析物的TiO2 @ Fe3O4 @ C-NF杂化材料的光催化降解效率达到80-100%,在紫外线照射下的8-125分钟范围内达到完全降解。简单的制备,解决方案的实际隔离,高效率,再现性和可持续性是TiO2 @ Fe3O4 @ C-NFS的主要优点,用于MSPE和光催化降解应用。

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