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首页> 外文期刊>RSC Advances >One-step controllable synthesis of three-dimensional WO3 hierarchical architectures with different morphologies decorated with silver nanoparticles: enhancing the photocatalytic activity
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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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Hierarchical architecture self-assembled three-dimensional WO _(3) and WO _(3) ·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 WO _(3) and WO _(3) ·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 WO _(3) ·0.20Ag was from E _(g) = 2.48 eV. It was found that 3D multi-branched spiky ball-like WO _(3) ·0.20Ag (corresponding to 1.2748 g of the AgNO _(3) ) microcrystals show outstanding photocatalytic activity in the photodegradation of RhB dye compared with other 3D hierarchical architectures.
机译:等级架构自组装三维WO _(3)和WO _(3)·具有高均匀性的Ag,通过过氧聚钨酸作为前体和银在中等水热条件下的形态学工程方法中成功获得。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WO _(3)和WO _(3)·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WO _(3)·0.20ag的带间隙能量来自E _(g)= 2.48eV。发现3D多分支尖刺球样WO _(3)·0.20ag(对应于1.2748g AgNo _(3))微晶在与其他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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