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首页> 外文期刊>International Journal of Quantum Chemistry >Visible light photoelectrochemical activity of K4Nb6O17 intercalated with photoactive complexes by electrostatic self-assembly deposition
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Visible light photoelectrochemical activity of K4Nb6O17 intercalated with photoactive complexes by electrostatic self-assembly deposition

机译:静电自组装沉积嵌入光敏配合物的K4Nb6O17的可见光电化学行为

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摘要

Electrostatic self-assembly deposition (ESD) results in the intercalation of Ru(bpy)2/3(+) or methylene blue (MB) into the niobate layered oxide right after the cations come into contact with [Nb6O17](4-) nanosheets. Monolayers can be obtained by the exfoliation of proton exchanged K4Nb6O17 (KNbO) in an aqueous tetrabutylammonium (TBA) solution as revealed by the atomic force microscopy micrographs. UV-vis spectra show that intercalated films are able to absorb in the visible light range. Heat-treatment of Ru(bpy)2/3(+) resulted in the red-shift in the absorption spectra, which was assigned to the enhancement in the interaction between the complex molecules and [Nb6O17](4-) host layer. Intercalated niobate layered oxides are able to produce photocurrent as a result of the electron transfer from the excited guest molecule to the host layer under visible light illumination. Ru(bpy)2/3(+) intercalated niobate layered oxide shows photocatalytic activity under visible light illumination to produce H-2 from water-methanol solution. (c) 2005 Elsevier Inc. All rights reserved.
机译:阳离子与[Nb6O17](4-)纳米片接触后,静电自组装沉积(ESD)导致Ru(bpy)2/3(+)或亚甲基蓝(MB)嵌入铌酸盐层状氧化物中。单层可以通过质子交换的K4Nb6O17(KNbO)在四丁基铵水溶液(TBA)中的剥离来获得,如原子力显微镜照片所揭示的。紫外可见光谱表明,插层膜能够在可见光范围内吸收。 Ru(bpy)2/3(+)的热处理导致吸收光谱发生红移,这归因于复合分子与[Nb6O17](4-)主体层之间相互作用的增强。由于电子在可见光照射下从受激客体分子转移到主体层,因此嵌入层状铌酸盐的氧化物能够产生光电流。 Ru(bpy)2/3(+)嵌入铌酸盐层状氧化物在可见光照射下表现出光催化活性,可从水-甲醇溶液中生成H-2。 (c)2005 Elsevier Inc.保留所有权利。

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