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氮硫共掺杂暴露{001}面的 TiO2 纳米片:合成、表征及可见光光催化活性。

Nitrogen and sulfur co-doped TiO2 nanosheets with exposed {001} facets: synthesis, characterization and visible-light photocatalytic activity.

机构信息

State Key Laboratory of Advanced Technology for Material Synthesis and Processing, Wuhan University of Technology, Luoshi Road 122#, Wuhan 430070, PR China.

出版信息

Phys Chem Chem Phys. 2011 Mar 21;13(11):4853-61. doi: 10.1039/c0cp01459a. Epub 2010 Nov 22.

Abstract

Nitrogen and sulfur co-doped TiO(2) nanosheets with exposed {001} facets (N-S-TiO(2)) were prepared by a simple mixing-calcination method using the hydrothermally prepared TiO(2) nanosheets powder as a precursor and thiourea as a dopant. The resulting samples were characterized by transmission electron microscope, X-ray diffraction, N(2) adsorption-desorption isotherms, X-ray photoelectron spectroscopy, and UV-Vis absorption spectroscopy. The electronic properties of N,S co-doped TiO(2) were studied using the first-principle density functional theory (DFT). The photocatalytic activity of N-S-TiO(2) was evaluated by degradation of 4-chlorophenol (4-CP) aqueous solution under visible light irradiation. The production of hydroxyl radicals (˙OH) on the surface of visible-light-irradiated samples was detected by photoluminescence technique using terephthalic acid as a probe molecule. The results show that nitrogen and sulfur atoms were successfully incorporated into the lattice of TiO(2), which resulted in N-S-TiO(2) samples exhibiting stronger absorption in the UV-visible range with a red shift in the band gap transition. The first-principle DFT calculations further confirm that N and S co-dopants can induce the formation of new energy levels in the band gap, which is associated with the response of N-S-TiO(2) nanosheets to visible light irradiation. Surprisingly, pure TiO(2) nanosheets show the visible-light photocatalytic activity for the degradation of 4-CP mainly due to the substrate-surface complexation of TiO(2) and 4-CP, which results in extending absorption of titania to visible light region through ligand-to-titanium charge transfer. The N-S-TiO(2) samples studied exhibited an enhanced visible-light photocatalytic activity than pure TiO(2). Especially, the doped TiO(2) sample at the nominal weight ratio of thiourea to TiO(2) powder of 2 showed the highest photocatalytic activity, which was about twice greater than that of Degussa P25. The enhanced activity of N-S-TiO(2) can be primarily attributed to the synergetic effects of two factors including the intense absorption in the visible-light region and the exposure of highly reactive {001} facets of TiO(2) nanosheets. The former is beneficial for the photogeneration of electrons and holes participating in the photocatalytic reactions, and the latter facilitates adsorption of 4-CP molecules on the surface of TiO(2) nanosheets.

摘要

具有暴露的{001}面的氮硫共掺杂 TiO(2)纳米片(N-S-TiO(2))是通过简单的混合-煅烧方法制备的,以水热制备的 TiO(2)纳米片粉末为前体,硫脲为掺杂剂。通过透射电子显微镜、X 射线衍射、N(2)吸附-解吸等温线、X 射线光电子能谱和紫外-可见吸收光谱对所得样品进行了表征。使用第一性原理密度泛函理论(DFT)研究了 N,S 共掺杂 TiO(2)的电子性质。通过在可见光照射下降解 4-氯苯酚(4-CP)水溶液评价了 N-S-TiO(2)的光催化活性。通过使用对苯二甲酸作为探针分子的光致发光技术检测了可见光照下样品表面羟基自由基(˙OH)的产生。结果表明,氮和硫原子成功地掺入 TiO(2)晶格中,导致 N-S-TiO(2)样品在紫外-可见区域的吸收更强,带隙跃迁发生红移。第一性原理 DFT 计算进一步证实,N 和 S 共掺杂剂可以在带隙中诱导形成新的能级,这与 N-S-TiO(2)纳米片对可见光照射的响应有关。令人惊讶的是,纯 TiO(2)纳米片对 4-CP 的降解表现出可见光光催化活性,主要是由于 TiO(2)和 4-CP 的基底-表面络合作用,通过配体-钛电荷转移将 TiO(2)的吸收扩展到可见光区域。研究的 N-S-TiO(2)样品表现出比纯 TiO(2)更高的可见光光催化活性。特别是,硫脲与 TiO(2)粉末的名义重量比为 2 的掺杂 TiO(2)样品表现出最高的光催化活性,约为 Degussa P25 的两倍。N-S-TiO(2)活性的增强主要归因于两个因素的协同作用,包括在可见光区域的强烈吸收和 TiO(2)纳米片暴露的高反应性{001}面。前者有利于参与光催化反应的电子和空穴的光生,后者有利于 4-CP 分子在 TiO(2)纳米片表面的吸附。

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