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Enhanced photocatalytic activity and ultra-sensitive benzaldehyde sensing performance of a SnO2 center dot ZnO center dot TiO2 nanomaterial

机译:增强的光催化活性和超敏感的苯甲醛感应性能的SNO2中心点ZnO中心点TiO2纳米材料

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摘要

The synthesis of a ternary SnO2 center dot ZnO center dot TiO2 nanomaterial (NM) by a simple co-precipitation method and its potential applications as an efficient photocatalyst and chemical sensor have been reported. The synthesized nanomaterial was fully characterized by XRD, SEM, EDS, XPS, FTIR, AFM and photoluminescence studies. This nanomaterial exhibited enhanced efficiency in photo-catalysis of Methyl Violet 6b (MV) dye degradation. The observed photocatalyst efficiency of the SnO2 center dot ZnO center dot TiO2 nanomaterial was 100% under UV light at pH 9. Moreover, it lost around 12% efficiency over five reuses. The PL properties with changing excitation energy were also reported. Glassy carbon electrode (GCE) was modified with the SnO2 center dot ZnO center dot TiO2 nanomaterial by an efficient electrochemical technique to develop a chemical sensor for selective benzaldehyde. Hazardous benzaldehyde was carefully chosen as a target analyte by a selectivity study; it displays a rapid response towards the SnO2 center dot ZnO center dot TiO2/Nafion/GCE sensor probe in electrochemical sensing. It also shows superb sensitivity, an ultra-low detection limit, long-term stability, and very good repeatability and reproducibility. In this study, a linear calibration plot was obtained for 0.1 nM to 1.0 mM aqueous benzaldehyde solutions, with a sensitivity value of 4.35 nA mu M-1 cm(-2) and an exceptionally low detection limit (LOD) of 3.2 +/- 0.1 pM (S/N = 3). Hence, a chemical sensor modified with SnO2 center dot ZnO center dot TiO2/GCE may be a promising sensor in the determination of toxic chemicals in the environmental and healthcare fields.
机译:据报道,通过简单的共沉淀法合成三元SnO2中心点ZnO ZnO ZnO ZnO中心点TiO2纳米材料(NM)及其作为高效光催化剂和化学传感器的潜在应用。合成的纳米材料通过XRD,SEM,EDS,XPS,FTIR,AFM和光致发光研究完全表征。该纳米材料在甲基紫6B(MV)染料降解的光催化方面具有增强的效率。在pH 9的UV光下观察到的SnO2中心点ZnO ZnO中心点TiO2纳米材料的光催化效率为100%,此外,在五个重复速度下损失了大约12%的效率。还报道了具有改变激发能量的PL性能。通过高效的电化学技术用SnO2中心点ZnO中心点TiO2改变玻璃碳电极(GCE),以开发用于选择性苯甲醛的化学传感器。通过选择性研究将危险的苯甲醛精心选择为靶分析物;它显示了朝向SnO2中心点ZnO中心点TiO2 / Nafion / GCE传感器探头的快速响应,以电化学传感。它还显示出高度的灵敏度,超低检测限,长期稳定性以及非常好的重复性和再现性。在该研究中,获得了0.1nm至1.0mM的苯甲醛溶液的线性校准图,灵敏度值为4.35纳米m-1cm(-2)和3.2 +/-的异常低的检测限(LOD) 0.1 pm(s / n = 3)。因此,用SnO2中心点ZnO中心点TiO2 / GCE改性的化学传感器可以是在环境和医疗保健领域的有毒化学品中的有前途传感器。

著录项

  • 来源
    《RSC Advances》 |2018年第58期|共11页
  • 作者单位

    Shahjalal Univ Sci &

    Technol Sch Phys Sci Dept Chem Sylhet 3100 Bangladesh;

    Shahjalal Univ Sci &

    Technol Sch Phys Sci Dept Chem Sylhet 3100 Bangladesh;

    Shahjalal Univ Sci &

    Technol Sch Phys Sci Dept Chem Sylhet 3100 Bangladesh;

    Shahjalal Univ Sci &

    Technol Sch Phys Sci Dept Chem Sylhet 3100 Bangladesh;

    King Abdulaziz Univ Fac Sci Dept Chem CEAMR POB 80203 Jeddah 21589 Saudi Arabia;

    King Abdulaziz Univ Fac Sci Dept Chem CEAMR POB 80203 Jeddah 21589 Saudi Arabia;

    Griffith Univ Griffith Sch Environm Ctr Clean Environm &

    Energy Gold Coast Campus Nathan Qld 4222 Australia;

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  • 正文语种 eng
  • 中图分类 化学;
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