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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Photoinduced Reactivity of Strongly Coupled TiO2 Ligands under Visible Irradiation: An Examination of an Alizarin Red@ TiO2 Nanoparticulate System
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Photoinduced Reactivity of Strongly Coupled TiO2 Ligands under Visible Irradiation: An Examination of an Alizarin Red@ TiO2 Nanoparticulate System

机译:可见光下强耦合TiO2配体的光诱导反应性:茜素红@ TiO2纳米颗粒体系的研究。

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摘要

Similarly to alizarin molecules, 3,4-dihydroxy-9,10-dioxo-2-anthracenesulfonate (alizarin red, AR), chelates TiO2 nanoparticles through the catechol moiety, and shifts the absorption threshold of the semiconductor to the visible region. The photoinduced reactivity of the coupled system AR@TiO2 was investigated through quantum yields determinations in nonscattering sols of TiO2 modified nanoparticles. In contrast with the behavior observed in TiO2 microparticulated systems, the chemisorbed ligand has a high stability under aerated visible light irradiation. The quantum yield for alizarin red oxidation Φ_(-AR) = 4 x 10~(-4) correlates with the negligible efficiency for oxygen reduction in the constrained environment of the smaller particles. Conversely, reduction of Cr(VI) to Cr(V) in the coupled AR@TiO2 system, confirmed by electron paramagnetic resonance spectroscopy, utilizes a high fraction of the photogenerated electrons and induces the degradation of the complex. Quantum efficiencies for chromium(VI) disappearance, Φ_(-Cr(VI)), approaches 37% at [Cr(VI)]0 = 200 μM. The interactions between Cr(VI)/AR and Cr(VI)/TiO2 are analyzed in detail. Spectroscopic evidence is presented for the first time that Cr(VI) forms a charge-transfer complex with TiO2 nanoparticles that could be excited by visible light (λ ≤ 440 nm). The environmental implications of the above findings are briefly discussed.
机译:与茜素分子相似,3,4-二羟基-9,10-二氧代-2-蒽磺酸盐(茜素红,AR)通过邻苯二酚部分螯合TiO2纳米颗粒,并将半导体的吸收阈值移动到可见区域。通过在TiO2改性纳米粒子的非散射溶胶中的量子产率测定,研究了偶联体系AR @ TiO2的光诱导反应性。与在TiO2微粒体系中观察到的行为相反,化学吸附的配体在充气可见光照射下具有很高的稳定性。茜素红氧化Φ_(-AR)= 4 x 10〜(-4)的量子产率与在较小颗粒的受限环境中氧气还原的效率可忽略不计。相反,通过电子顺磁共振波谱证实,在偶合的AR @ TiO2系统中,Cr(VI)还原为Cr(V),利用了大部分光生电子,并诱导了复合物的降解。铬(VI)消失的量子效率Φ_(-Cr(VI))在[Cr(VI)] 0 = 200μM时接近37%。详细分析了Cr(VI)/ AR和Cr(VI)/ TiO2之间的相互作用。光谱学证据首次表明,Cr(VI)与TiO2纳米颗粒形成电荷转移络合物,而该颗粒可被可见光(λ≤440 nm)激发。简要讨论了以上发现对环境的影响。

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