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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >One-pot photo-synthesis and in-situ generation of hydrogen by silver/strontium titanate photocatalyst under visible or near-UV light and role of midgap states: Experiment and DFT computations
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One-pot photo-synthesis and in-situ generation of hydrogen by silver/strontium titanate photocatalyst under visible or near-UV light and role of midgap states: Experiment and DFT computations

机译:通过银/钛酸锶光催化剂在可见或接近紫外线的光催化剂和中间纤维的作用下,单壶照片合成和原位产生氢气状态:实验和DFT计算

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We report "one-pot" photo-synthesis of nanocrystalline Ag(0)/SrTiO3 photocatalysts in aqueous suspension followed by in-situ testing in the same suspension to generate hydrogen under visible (lambda >400 nm) or near-UV/visible (lambda > 366 nm) light. The Ag(0)/SrTiO3 showed a significant increase of the photocatalytic rate vs. SrTiO3 i) under near-UV/visible light with very small amount of silver promoter at Ago.001/SrTiO3 and ii) under visible light with Ag-0.05/SrTiO3. The Ag(0)/SrTiO3 was characterized by several complementary structural and spectroscopic methods; no bandgap narrowing in the nanocrystalline Ag(0)/SrTiO3 has been observed. Mechanism of photocatalytic hydrogen generation with Ag(0)/SrTiO3 under visible light involves relaxation of excited electron through the set of distinct electronic midgap states and includes preferential quenching of one of the two specific midgap transitions. The DFT computations of SrTiO3 with small cluster model for TiO2- and SrO-terminated surfaces result, for the first time, in optical bandgaps very close to experimental values. Geometry and binding energies were calculated for silver clusters attached to TiO2- and SrO-terminated surfaces. The DFT calculations suggest the mechanism of operation of Ag(0)/SrTiO3 under the UV light. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们在水性悬浮液中报告“单罐”光合成纳米晶体Ag(0)/ srtiO3光催化剂,然后在相同的悬浮液中进行原位测试,以在可见光(Lambda> 400nm)或接近UV /可见( lambda> 366 nm)光。 Ag(0)/ SRTiO3在近UV /可见光下显示出在近UV /可见光下的光催化率与SRTIO3 I)在以前的少量银促进剂,IS为AG-0.05 / srtio3。 Ag(0)/ SRTiO3的特征在于几种互补结构和光谱方法;已经观察到纳米晶体(0)/ sRTIO3中缩小的带隙。在可见光下用Ag(0)/ srtio3的光催化氢产生的机制涉及通过该组不同的电子中间墨水释放激发电子,并且包括两个特定的中腔转换之一的优先淬火。 SRTIO3的DFT计算具有小型集群模型,用于TiO2和SRO终止表面的终结结果非常接近实验值。为连接到TiO 2和封端表面的银簇计算几何和结合能。 DFT计算表明Ag(0)/ srtio3在紫外光下的操作机制。 (c)2017 Elsevier B.v.保留所有权利。

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