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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >The effect of infrared light on visible light photocatalytic activity: An intensive contrast between Pt-doped TiO2 and N-doped TiO2
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The effect of infrared light on visible light photocatalytic activity: An intensive contrast between Pt-doped TiO2 and N-doped TiO2

机译:红外光对可见光光催化活性的影响:Pt掺杂的TiO2和N掺杂的TiO2之间的强烈对比

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Pt-doped TiO2 and N-doped TiO2 were prepared, using nanotubular titanic acid as precursor, by wet impregnation and NHs-heating method, respectively. Both Pt-doped and N-doped TiO2 show an apparent photocatalytic oxidation of propylene under visible light irradiation. The origin of visible light sensitization was ascribed to the intra-band contributed by the formation of single-electron-trapped oxygen vacancies, while dopants platinum or nitrogen play a role not only in suppressing the recombination of photoinduced electrons and holes but also in increasing the ability of visible light absorption of TiO2. The visible light photocatalytic activity of Pt-doped TiO2 can be greatly improved by additional infrared light irradiation, while visible-light-active N-doped TiO2 has no such phenomenon. Infrared light per se is unable to excite Pt-doped TiO2 catalyst to initiate photocatalytic reaction, but the strong interaction between platinum and oxygen vacancies resulted in absorption peaks at 800-900 nm, resulting in a giant enhancement in visible light photocatalytic activity of Pt-doped TiO2 in the presence of infrared light irradiation because the formed heterojunctions between dopants Pt and TiO2 may function as thermal catalytic sites. The influences of reaction temperatures on visible light photoactivity of both Pt-doped and N-doped TiO2 were studied. It was found that both C3H6 removal and CO2 selectivity over Pt-doped TiO2 were increased with increasing the reaction temperature, while it was inert for N-doped TiO2.
机译:以纳米管钛酸为前驱体,采用湿法浸渍法和NHs-加热法分别制备了Pt掺杂的TiO2和N掺杂的TiO2。 Pt掺杂和N掺杂的TiO2在可见光照射下均表现出明显的丙烯光催化氧化。可见光敏化的起源归因于单电子俘获的氧空位的形成所引起的带内,而掺杂剂铂或氮不仅在抑制光致电子和空穴的复合中还起着增加TiO2的可见光吸收能力。 Pt掺杂的TiO2的可见光光催化活性可以通过额外的红外光照射而大大提高,而可见光活性的N掺杂的TiO2没有这种现象。红外光本身不能激发掺杂Pt的TiO2催化剂来引发光催化反应,但是铂和氧空位之间的强相互作用导致在800-900 nm处出现吸收峰,从而导致Pt-的可见光光催化活性大大增强。由于在掺杂剂Pt和TiO2之间形成的异质结可能充当热催化位点,因此在红外光照射下掺杂了TiO2。研究了反应温度对Pt掺杂和N掺杂的TiO2可见光光活性的影响。研究发现,随着反应温度的升高,Pt掺杂的TiO2的C3H6去除率和CO2选择性均增加,而N掺杂的TiO2惰性。

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