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首页> 外文期刊>Applied Surface Science >Photocatalytic activity of functionalized nanodiamond-TiO_2 composites towards water pollutants degradation under UV/Vis irradiation
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Photocatalytic activity of functionalized nanodiamond-TiO_2 composites towards water pollutants degradation under UV/Vis irradiation

机译:功能化纳米金刚石-TiO_2复合材料对紫外/可见光降解水污染物的光催化活性

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摘要

Pristine nanodiamonds (NDs) obtained by detonation, or functionalized by different treatments, namely oxidation, hydrogenation and amination, were used to synthesize composites by insertion in TiO2 matrixes. The different treatments of the NDs lead to materials containing diverse texture properties and surface chemistry functionalities, particularly concerning the insertion of nitrogen and oxygen groups. The photocatalytic activity of the prepared composites was evaluated for the oxidative degradation of two water soluble pharmaceuticals - diphenhydramine and amoxicillin - under near-UV/Vis irradiation. The most active photocatalyst in what concerns both pollutants degradation under near-UV/Vis irradiation was the composite containing pristine NDs (NDDT). The photocatalytic performances were dependent on the specific surface area and on the amount of functional groups incorporated over the NDs. The influence of ND in the composites activity is well correlated with the observed photoluminescence quenching of TiO2, which corresponds to a delay in the recombination rate of charge carriers that benefices the photocatalytic reaction. Scavenging of photogenerated holes and radicals by employing sacrificial hole and radical agents revealed that the holes played the main role on both pollutants degradation under UV/Vis irradiation. Reutilization experiments proved that the ND composites have good stability and reusability.
机译:通过爆轰获得或通过不同的处理(即氧化,氢化和胺化)功能化的原始纳米金刚石(NDs)用于通过插入TiO2基质来合成复合材料。 ND的不同处理导致材料具有不同的织构性质和表面化学功能,特别是涉及氮和氧基团的插入。在近紫外/可见光照射下,对两种水溶性药物苯海拉明和阿莫西林的氧化降解情况,评价了所制备复合材料的光催化活性。与两种污染物在近紫外线/可见光照射下降解有关的最活跃的光催化剂是含有原始NDs(NDDT)的复合材料。光催化性能取决于比表面积和结合在ND上的官能团的量。 ND对复合物活性的影响与观察到的TiO2的光致发光猝灭密切相关,这对应于有益于光催化反应的电荷载流子复合速率的延迟。通过使用牺牲性空穴和自由基剂清除光生空穴和自由基,揭示了空穴在紫外线/可见光照射下对两种污染物的降解起主要作用。再利用实验证明,ND复合材料具有良好的稳定性和可重复使用性。

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