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Size-controlled gold nanoparticles on octahedral anatase particles as efficient plasmonic photocatalyst

机译:八面体锐钛矿颗粒上大小可控的金纳米颗粒作为高效等离子体光催化剂

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摘要

Octahedral anatase particles (OAPs), prepared by ultrasonication-hydrothermal reaction (US-HT), were modified with 2 wt% of gold by photodeposition. Conditions of US-HT process such as durations of US and durations of HT were varied to obtain OAPs products different by physicochemical and morphological properties. Au/OAPs samples were characterized by X-ray diffraction (XRD), scanning transmission electron microscopy (STEM), X-ray photoelectron spectroscopy (XPS) and diffuse reflectance spectroscopy (DRS). The photocatalytic activity was tested under UV irradiation for decomposition of acetic acid (CO2 system) and dehydrogenation of methanol (H2 system) under aerobic and anaerobic conditions, respectively, and for oxidation of 2-propanol under visible light irradiation. Photodeposition of gold was very fast for all OAPs samples (0.5–10 min) under Ar atmosphere, and the clear correlation between the content of electron traps (ETs) and the induction period, during which nanoparticles (NPs) of gold are formed, indicates that ETs in titania samples are a key-factor for rapidity of gold photodeposition on titania surface. It was found that better morphology of titania (larger content of faceted particles) resulted in formation of larger gold NPs, while small gold NPs were deposited on structural defects. Modification of OAPs with gold NPs resulted in significant enhancement of photocatalytic activity, being e.g., 1.5 (CO2 system), 7.7 (H2 system), and even more than 40 under vis irradiation. It was found that both the properties of titania and gold are crucial for resultant photocatalytic activity, but a direct correlation between one structural/physical property and photocatalytic activity could not be obtained since all structural properties changed simultaneously when conditions of photocatalyst preparation (US-HT) were changed. Therefore, gold NPs of controlled sizes were deposited on OAPs product with the best morphology by modified photodeposition method. Clear correlation between photocatalytic activity under visible light and the size of gold NPs indicates that gold properties are decisive for visible light activity rather than titania properties. 3D-FDTD simulations confirm that an increase in the size of gold NPs results in extended surface areas with field enhancement.
机译:通过超声沉积-水热反应(US-HT)制备的八面体锐钛矿颗粒(OAPs)通过光沉积用2 wt%的金修饰。改变US-HT过程的条件,例如US的持续时间和HT的持续时间,以获得通过物理化学和形态学性质不同的OAP产品。 Au / OAPs样品的特征在于X射线衍射(XRD),扫描透射电子显微镜(STEM),X射线光电子能谱(XPS)和漫反射光谱(DRS)。在紫外线照射下测试了光催化活性,分别在需氧和厌氧条件下测试了乙酸的分解(CO2系统)和甲醇的脱氢(H2系统),并在可见光下测试了2-丙醇的氧化。在Ar气氛下,所有OAP样品(0.5-10分钟)中的金的光沉积速度都非常快,并且电子陷阱(ET)的含量与诱导期之间有明显的相关性,在此期间金的纳米颗粒(NPs)形成了。二氧化钛样品中的ETs是二氧化钛表面金快速沉积的关键因素。发现二氧化钛的更好的形态(较大含量的刻面颗粒)导致形成较大的金纳米颗粒,而较小的金纳米颗粒沉积在结构缺陷上。用金NP修饰OAPs可以显着提高光催化活性,例如在可见光下可提高至1.5(CO2系统),7.7(H2系统),甚至超过40。已发现二氧化钛和金的性质对于所得的光催化活性至关重要,但是由于在光催化剂制备条件下所有结构性质同时改变,因此无法获得一种结构/物理性质与光催化活性之间的直接相关性。 )已更改。因此,通过改进的光沉积方法,将大小可控的金纳米颗粒沉积在具有最佳形态的OAPs产品上。可见光下的光催化活性与金纳米颗粒大小之间的明显相关性表明,金的性质对可见光的活性起决定性作用,而不是对二氧化钛起决定作用。 3D-FDTD模拟证实,金纳米颗粒尺寸的增加会导致电场增强而扩大表面积。

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