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One-step controllable synthesis of three-dimensional WO3 hierarchical architectures with different morphologies decorated with silver nanoparticles: enhancing the photocatalytic activity

机译:用银纳米粒子装饰不同形态的三维WO3层级架构的一步控制合成:增强光催化活性

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摘要

Hierarchical architecture self-assembled three-dimensional WO3 and WO3 center dot Ag with high uniformity have been successfully obtained using peroxopolytungstic acid as precursor and silver in a morphological engineering approach under moderate hydrothermal conditions. The as-grown samples were characterized by XRD, FEG-SEM, HRTEM, TGA, Raman, FTIR, UV-Vis, and XPS. In addition, the photocatalytic performance of the hierarchical architecture self-assembled three-dimensional WO3 and WO3 center dot Ag has also been investigated through degradation of Rhodamine B (RhB) dye under 467 nm LED light irradiation. Results show that the hierarchical architecture self-assembled three-dimensional shapes evolve (depending on the silver amount) from 3D irregular-platelet-like building blocks to 3D hexagonal building blocks then to three-dimensional hexagonal-football-like and finally to 3D multi-branched spiky ball-like microcrystals. Also, high-magnification FEG-SEM and HRTEM images showed that the Ag nanoparticles with diameter about 5-15 nm were anchored on the surface of the 3D hierarchical architecture. UV-Vis measurements demonstrated that the 3D hierarchical structures gradually absorbed more light when the Ag content was increased. Moreover, the band-gap energy to WO3 center dot 0.20Ag was from E-g = 2.48 eV. It was found that 3D multi-branched spiky ball-like WO3 center dot 0.20Ag (corresponding to 1.2748 g of the AgNO3) microcrystals show outstanding photocatalytic activity in the photodegradation of RhB dye compared with other 3D hierarchical architectures.
机译:使用过氧聚钨酸作为前体和银在中等水热条件下,使用过氧化物钨酸作为前体和银,在适度的水热条件下成功获得具有高均匀性的分层架构的三维WO3和WO3中心点AG。以XRD,FEG-SEM,HRTEM,TGA,拉曼,FTIR,UV-Vis和XPS为特征。此外,还通过467nm LED光照射下的罗丹明B(RHB)染料的降解研究了层次结构自组装三维WO3和WO3中心点AG的光催化性能。结果表明,等级架构自组装的三维形状从3D不规则 - 血小板建筑块到达3D六角形建筑块的三维六角形 - 足球状,最后到3D多 - 支撑尖刺球状微晶。此外,高倍率Feg-SEM和HRTEM图像显示,直径约为5-15nm的Ag纳米颗粒在3D层级架构的表面上锚定。 UV-VI-VI测量表明,当AG含量增加时,3D层次结构逐渐被吸收更多的光。此外,与WO3中心点0.20Ag的带间隙能量来自E-G = 2.48eV。发现3D多分支尖峰球样WO3中心点0.20ag(对应于1.2748g AgNO 3)微晶显示,与其他3D层级架构相比,RHB染料的光降解表现出优异的光催化活性。

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  • 来源
    《RSC Advances》 |2020年第11期|共15页
  • 作者单位

    Univ Estadual Paulista Unesp Dept Chem POB 473 BR-17033360 Bauru SP Brazil;

    Univ Fed Espirito Santo Dept Chem BR-29075910 Vitoria ES Brazil;

    Univ Estadual Paulista Dept Phys FCT Rua Roberto Simonsen 305 BR-19060900 Presidente Prudente SP Brazil;

    Univ Sao Paulo Phys Inst Sao Carlos IFSC Sao Carlos SP Brazil;

    Univ Fed Sao Carlos Dept Phys NanO LaB Via Washington Luiz Km 235 POB 676 BR-13565905 Sao Carlos SP Brazil;

    Univ Fed Sao Carlos Dept Chem LIEC CDMF Via Washington Luiz Km 235 POB 676 BR-13565905 Sao Carlos SP Brazil;

    Univ Estadual Paulista Unesp Dept Chem POB 473 BR-17033360 Bauru SP Brazil;

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  • 正文语种 eng
  • 中图分类 化学;
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