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Development of metal cation compound-loaded S-doped TiO2 photocatalysts having a rutile phase under visible light

机译:可见光下金红石相负载金属阳离子化合物的S掺杂TiO2光催化剂的研制

摘要

We have synthesized S (S4+)-doped TiO2 photocatalysts having a rutile phase. Rutile S-doped TiO2 photocatalysts loaded with metal ion compounds (Fe3+, Rh3+, Cu2+, Co3+, Ni2+, Cr3+) have also been prepared (S-doped TiO2-Mn+). The metal ions were adsorbed on the surfaces of S-doped TiO2 nanoparticles by impregnation methods (IM) or photodeposition methods (PH). The photocatalytic activities of S-doped TiO2 for oxidation of acetaldehyde in gas phase were drastically improved after adsorbing treatment of metal ions under a wide range of incident light wavelengths. Under photoirradiation at wavelengths longer than 350 or 420 nm, S-doped TiO2-Cu2+ (PH) shows the highest level of activity among the metal ions. S-doped TiO2-Fe3+ (IM) shows the highest level of activity for oxidation of acetaldehyde in gas phase compared to the activity levels of S-doped TiO2 with loading of other metal ions such as Rh3+, Cu2+ Co3+, Ni2+, and Cr3+ under a wide range of incident light wavelengths. The optimum amount of metal ion compound nanoparticles adsorbed on S-doped TiO2 was 0.1 wt%. In order to elucidate the role of metal ions adsorbed on the surface of S-doped TiO2, we measured the double beam photoacoustic spectra (DB-PA). The amount of Ti3+ generated as a result of the reaction between Ti4+ and photoexcited electrons was analyzed by this spectroscopy. The relationship between the reaction rate of photocatalytic oxidation of acetaldehyde on S-doped TiO2 adsorbed with metal ions and the charge separation between photoexcited electrons and holes is discussed.
机译:我们已经合成了具有金红石相的S(S4 +)掺杂的TiO2光催化剂。还制备了负载有金属离子化合物(Fe3 +,Rh3 +,Cu2 +,Co3 +,Ni2 +,Cr3 +)的金红石型S掺杂TiO2光催化剂(S掺杂TiO2-Mn +)。通过浸渍法(IM)或光沉积法(PH)将金属离子吸附在S掺杂的TiO2纳米颗粒的表面上。在很宽的入射光波长范围内对金属离子进行吸附处理后,S掺杂的TiO2对气相乙醛氧化的光催化活性得到了极大的提高。在波长大于350或420 nm的光辐照下,S掺杂的TiO2-Cu2 +(PH)在金属离子中显示出最高的活性水平。与S掺杂的TiO2的活性水平相比,S掺杂的TiO2-Fe3 +(IM)在气相下显示出最高的乙醛氧化活性水平,而其他金属离子如Rh3 +,Cu2 +,Co3 +,Ni2 +和Cr3 +各种各样的入射光波长。 S掺杂TiO2上吸附的金属离子化合物纳米颗粒的最佳量为0.1wt%。为了阐明吸附在S掺杂TiO2表面上的金属离子的作用,我们测量了双束光声光谱(DB-PA)。通过该光谱分析了由于Ti 4+与光激发电子之间的反应而产生的Ti 3+的量。讨论了乙醛在金属离子吸附的S掺杂TiO2上的光催化氧化反应速率与光激发电子与空穴之间电荷分离之间的关系。

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