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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Rutile TiO2 films with 100% exposed pyramid-shaped (111) surface: photoelectron transport properties under UV and visible light irradiation
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Rutile TiO2 films with 100% exposed pyramid-shaped (111) surface: photoelectron transport properties under UV and visible light irradiation

机译:具有100%暴露的金字塔形(111)表面的金红石TiO2膜:在紫外线和可见光照射下的光电子传输特性

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In this work, a facile hydrothermal method was employed to directly grow the rutile TiO2 film with 100% exposed pyramid-shaped (111) surface onto a FTO conducting substrate, and the resulting rutile TiO2 film was used as the photoanode after annealing at 450 °C for 2 h in argon (Ar) to investigate photoelectrocatalytic properties under UV and visible light irradiation. The photoelectrocatalytic activities of the resultant photoanode under UV (main wavelength of 365 nm) and visible light (A > 400 nm) irradiation were evaluated using water as the probe compound, The photoelectrocatalytic activity of the UV light illuminated photoanode was found to be 0.144 mA mW~(-1), significantly higher than that obtained from the visible light illuminated photoanode (0.102 μA mW~(-1)). Despite this, the determined value of 0.102 μA mW~(-1) represents an excellent visible light photoelectrocatalytic activity of the photoanode. The origin of visible light activity could be attributed to the doped Ti~(3+) in the bulk TiO2. The superior photoelectrocatalytic activity could be due to the high reactivity of the exposed high-energy (111) surface and the superior photoelectron transport property. A photoelectrocatalytic method was used to manifest the photoelectron transport properties inside the rutile TiO2 film and concurrently quantify the inherent resistances (R0) of UV and visible light illuminated photoanodes. The determined R0 values were 93.5 and 91.3 Ω for UV and visible light illuminated photoanodes, respectively. The similar R0 values imply a similar photoelectron transport resistance inside the rutile TiO2 film under UV and visible light irradiation, confirming that the measured R0 is an inherent property of the photocatalyst film. This also implies that the rate of charge recombination is similar under UV and visible light irradiation. To our knowledge, this is the first time the electron transport properties of a rutile TiO2 photoanode have been concurrently investigated under UV and visible light irradiation.
机译:在这项工作中,采用一种简便的水热方法将具有100%暴露的金字塔形(111)表面的金红石TiO2薄膜直接生长在FTO导电衬底上,并将所得的金红石TiO2薄膜在450°C退火后用作光阳极。在氩气(Ar)中加热2 h,以研究紫外线和可见光照射下的光电催化性能。使用水作为探针化合物评估所得的光阳极在紫外光(主波长365 nm)和可见光(A> 400 nm)照射下的光电催化活性,发现紫外光照射的光电阳极的光电催化活性为0.144 mA mW〜(-1),明显高于可见光照射的光电阳极(0.102μAmW〜(-1))。尽管如此,确定的值为0.102μAmW〜(-1)表示光阳极具有优异的可见光光电催化活性。可见光活动的起源可归因于本体TiO2中掺杂的Ti〜(3+)。优异的光电催化活性可能归因于暴露的高能(111)表面的高反应性和优异的光电传输特性。使用光电催化方法来显示金红石型TiO2薄膜内部的光电传输特性,并同时量化UV和可见光照射的光阳极的固有电阻(R0)。对于紫外和可见光照射的光阳极,确定的R0值分别为93.5和91.3Ω。相似的R0值表示在紫外和可见光照射下,金红石型TiO2膜内部的光电子输运电阻相似,这证实了测得的R0是光催化剂膜的固有特性。这也意味着在紫外线和可见光照射下,电荷的复合速率相似。据我们所知,这是首次在紫外和可见光辐射下同时研究了金红石型TiO2光电阳极的电子传输性能。

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