首页> 外文期刊>ACS applied materials & interfaces >High-Performance Photocatalytic Hydrogen Production and Degradation of Levofloxacin by Wide Spectrum-Responsive Ag/Fe3O4 Bridged SrTiO3/g-C3N4 Plasmonic Nanojunctions: Joint Effect of Ag and Fe3O4
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High-Performance Photocatalytic Hydrogen Production and Degradation of Levofloxacin by Wide Spectrum-Responsive Ag/Fe3O4 Bridged SrTiO3/g-C3N4 Plasmonic Nanojunctions: Joint Effect of Ag and Fe3O4

机译:宽谱响应Ag / Fe3O4桥接SRTiO3 / G-C3N4等离子体纳米局,高性能光催化氢气产生和降解左氧氟沙星(左氧氟沙星)

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摘要

Highly photoresponsive semiconductor photocatalysis for energy and environmental applications require judicious choice and optimization of semiconductor interfaces for wide spectral capabilities. This work aims at rational designing of highly active SrTiO3/g-C3N4 junctions bridged with Ag/Fe3O4 nanoparticles for utilizing Z-scheme transfer and surface plasmon resonance effect of Ag augmented by iron oxide. The SrTiO3/(Ag/Fe3O4)/g-C3N4 (SFC) catalyst was employed for photocatalytic hydrogen production and photodegradation of levofloxacin (LFC; 20 mg/L) under UV, visible, near infra-red, and natural solar light exhibiting high performance. Under visible light (780 nm), SFC-3 sample (30 wt % g-C3N4 and 3% Ag/Fe3O4) shows a H-2 evolution of 2008 mu mol g(-1)h(-1) which is similar to 14 times that of bare g-C3N4. In addition, 99.3% removal of LFC was degraded in 90 min under visible light with retention of activity under sun. The inherent topological properties, complete, higher charge separation, and reduced recombination allowed this catalyst for a high photocatalytic response which was proved by UV diffuse reflectance spectroscopy, photoluminescence, electrochemical impedance spectroscopy, and photocurrent response measurements. Scavenging experiments and electron spin resonance analysis reveal that the mechanism shifts from a dual charge transfer in case of binary junction to essential Z-scheme with incorporation of Ag/Fe3O4. Both O-center dot(2)- and (OH)-O-center dot are main active radicals in visible light, whereas O-center dot(2)- majorly participate under UV. The synergistic effect of SrTiO3, g-C3N4, and plasmon resonance of Ag/Fe3O4 not only improves light response and reduce recombination but also enhances the redox-ability of charge carriers. A H-2 production mechanism and LFC degradation pathway (degradation, defluorination, and hydrolysis) has been predicted. This work paves a way for development of photocatalysts working in practical conditions for pollution and energy issues.
机译:用于能量和环境应用的高度光敏半导体光电催化需要明智的选择和优化半导体接口以获得广泛的光谱能力。该工作旨在理性设计桥接用Ag / Fe3O4纳米颗粒的高活性SRTIO3 / G-C3N4结,用于利用Ag的Z形式转移和表面等离子体共振效应通过氧化铁增强。使用SRTIO3 /(AG / FE3O4)/ G-C3N4(SFC)催化剂用于光催化氢气产生和左氧氟沙星(LFC; 20 mg / L)的光降解在紫外线下,可见,靠近红外线,自然太阳能光线表现。在可见光下(780nm),SFC-3样品(30wt%G-C3N4和3%Ag / Fe3O4)显示了2008μmMolg(-1)H(-1)的H-2演化类似于裸G-C3N4的14倍。此外,在可见光下,99.3%的LFC在可见光下在80分钟内降解,在阳光下保持活性。固有的拓扑性质,完全,更高的电荷分离和减少的重组允许该催化剂用于高光催化响应,通过UV弥漫性反射光谱,光致发光,电化学阻抗光谱和光电流响应测量证明。清除实验和电子自旋共振分析表明,在二进制交界处与掺入Ag / Fe3O4的基本Z方案的情况下,机构从双电荷转移移位。 O-Center Dot(2) - 和(OH)-O中心点都是可见光的主要主动自由基,而O-Center Dot(2) - 主要在UV下参与。 SRTIO3,G-C3N4和AG / Fe3O4的等离子体共振的协同作用不仅改善了光响应并减少重组,而且增强了电荷载体的氧化还原能力。已经预测了H-2生产机制和LFC降解途径(降解,偏氟化和水解)。这项工作为在实际污染和能源问题的实际条件下工作的光催化剂开发了一种方法。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2018年第47期|共17页
  • 作者单位

    Shenzhen Univ Guangdong Res Ctr Interfacial Engn Funct Mat Nanshan Dist Key Lab Biopolymers &

    Safety Evaluat Coll Mat Sci &

    Engn Shenzhen Key Lab Polymer Sci Shenzhen 518055 Peoples R China;

    Shoolini Univ Sch Chem Solan 173229 Himachal Prades India;

    Shenzhen Univ Guangdong Res Ctr Interfacial Engn Funct Mat Nanshan Dist Key Lab Biopolymers &

    Safety Evaluat Coll Mat Sci &

    Engn Shenzhen Key Lab Polymer Sci Shenzhen 518055 Peoples R China;

    King Saud Univ Coll Sci Dept Chem Adv Mat Res Chair Bldg 5 Riyadh 11451 Saudi Arabia;

    Sultan Qaboos Univ Fac Engn Dept Petr &

    Chem Engn Muscat 123 Oman;

    Chinese Res Inst Environm Sci State Key Lab Environm Criteria &

    Risk Assessmen Beijing 100012 Peoples R China;

    CSIC Inst Catalisis &

    Petr Quim C Marie Curie 2 Madrid 28049 Spain;

    Shenzhen Univ Guangdong Res Ctr Interfacial Engn Funct Mat Nanshan Dist Key Lab Biopolymers &

    Safety Evaluat Coll Mat Sci &

    Engn Shenzhen Key Lab Polymer Sci Shenzhen 518055 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    strontium titanate; graphitic carbon nitride; hetero-junction; hydrogen production; plasmonic Ag; pharmaceutical effluents;

    机译:钛酸锶;石墨碳氮化物;杂连接;氢气生产;PRASTAMONIC AG;药物流出物;

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