Silver-controlled evolution of morphological, structural, and optical properties of three-dimensional hierarchical WO <ce:inf loc='post'>3</ce:inf> structures synthesized from hydrothermal method
首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Silver-controlled evolution of morphological, structural, and optical properties of three-dimensional hierarchical WO 3 structures synthesized from hydrothermal method
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Silver-controlled evolution of morphological, structural, and optical properties of three-dimensional hierarchical WO 3 structures synthesized from hydrothermal method

机译:三维等级的形态学,结构和光学性能的银控制演变 3 从水热法合成的结构

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AbstractHierarchical structures of self-assembled three-dimensional (3D) WO3–Ag were synthesized via hydrothermal growth using precursor solutions of peroxopolytungstic acid with different amounts of Ag. The as-grown samples were analyzed by X-ray diffraction (XRD), field-emission scanning electron microscopy (FESEM), thermogravimetric analysis (TGA), Raman spectroscopy, Fourier transform infrared (FTIR) spectroscopy, ultraviolet–visible spectroscopy, and X-ray photoelectron spectroscopy. The XRD and Raman studies showed that as the amount of Ag was varied from 0 to 10?wt% in the hydrothermal growth solution, the crystal phase gradually changed from orthorhombic WO3·0.33H2O to hexagonal WO3. The FTIR and TGA studies revealed different hydration levels, supporting the XRD and Raman results. By controlling the amount of Ag in the precursor solution, platelet-like building blocks and hexagonal building blocks were obtained, highlighting the role of Ag in the hydrothermal growth of 3D WO3·0.33H2O and WO3microcrystals. In addition, high-magnification FESEM images showed that the Ag nanoparticles were anchored on the surface of the 3D hierarchical WO3–Ag structures, and the UV–vis measurements demonstrated that the 3D hierarchical structures gradually absorbed more light when the Ag content was increased. Moreover, the band-gap energy decreased when the Ag content was increased from 0?wt% (Eg?=?2.65?eV) to 10?wt% (Eg?=?2.26?eV). These experimental results demonstrate that the amount of Ag played a crucial role in determining the building blocks' morphology, and the hydration level, optical properties, and crystal phase of the WO3·nH2O microcrystals.Graphical abstractDisplay OmittedHighlights?The influence of Ag incorporation on properties of WO3has been analyzed carefully.?The 3D WO3structures have been synthesized by a Ag-assisted hydrothermal route.?The WO3.nH2O degree of hydration depends on the amount of Ag.]]>
机译:<![CDATA [ 抽象 自组装三维(3D)的分层结构WO 3 -Ag分别经由使用过氧化多钨酸的前体溶液与不同量的Ag的水热生长合成。在生长态样品通过X射线衍射(XRD),场发射扫描电子显微镜(FESEM),热重分析(TGA),拉曼光谱法分析,傅里叶变换红外(FTIR)光谱,紫外可见分光法,和X射线光电子能谱。的X射线衍射和拉曼研究表明,作为Ag的量是从0至10重量%,在水热生长溶液变化,晶相逐渐从斜方改变WO ?3 ·0.33H 2 0至六边形WO 3 。该FTIR和TGA研究表明不同的水合程度,配套XRD和拉曼结果。通过控制Ag的量在所述前体溶液,血小板像积木并且获得六角形积木,突出3D的水热生长的Ag的作用WO 3 ·0.33H 2 O和WO 3 微晶。此外,高倍率FESEM图像显示,银纳米粒子被锚定在三维分层的表面上WO 3 -Ag结构,和UV-VIS测量证明了3D等级结构逐渐吸收当Ag含量增加更多的光。 ?此外,当Ag含量从0%(重量)增加了带隙能量降低(电子 ? ????= 2.65电子伏特)至10重量%(电子 = 2.26 eV)的????。这些实验结果表明,Ag的量发挥在确定积木形态WO的至关重要的作用,而水合程度,光学特性,以及结晶相 3 ·名词ħ 2 0微晶 图形抽象 显示中省略 亮点 银掺入上的WO 3 已被仔细分析 三维WO 3 结构已经由银 - 辅助水热合成路线合成 < CE:标签> 3 .NH 2 0水合的程度取决于Ag量 ]]>

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