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Carbon doped ultra-small TiO_2 coated on carbon cloth for efficient photocatalytic toluene degradation under visible LED light irradiation

机译:碳布掺杂的碳掺杂超小型TiO_2,用于有效的光催化甲苯下可见光亮光辐照

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摘要

Photocatalytic activity triggered by visible light from light emitting diode (LED) is highly restricted by limited active sites, poor light absorption, and sluggish photo-generated carrier separation of the photocatalysts. Particularly for continuous degradation reaction of volatile organic compounds (VOCs), confined contact between flowing air pollutant gas and photocatalysts renders the degradation ineffective within a transient retention period. Considering the restriction of photocatalytic reaction occurred on semiconductor surface, ultra small TiO2 (USTiO2) nanoparticles were fabricated by a facile acid-assisted solvent method, which possess copious active sites. A simple heating process was further applied for carbon doping on USTiO2 (C-USTiO2) surface. As a result, the obtained C-USTiO2 exhibited high visible light absorption, rich photo-generated carrier density, and its rapid carrier separation performance. In this study, optimized C-USTiO2 photocatalyst was deposited on carbon cloth and tested for continuous toluene degradation under LED light irradiation. Results showed that the toluene removal efficiency can reach higher than 80% with high concentration of CO2 generated and an excellent cycle stability of over 180 min.
机译:来自发光二极管(LED)的可见光触发的光催化活性受到有限的活性部位,光吸收差和光催化剂的缓慢照射载体分离的高度限制。特别是对于挥发性有机化合物(VOC)的连续降解反应,流动空气污染物气体和光催化剂之间的受限接触使得在瞬态保留期内的降解无效。考虑到在半导体表面上发生的光催化反应的限制,通过容易酸辅助溶剂方法制造超小TiO 2(UstiO2)纳米颗粒,其具有丰富的活性位点。进一步施加简单的加热过程以在USTIO2(C-USTIO2)表面上掺杂碳掺杂。结果,所获得的C-USTIO2表现出高可见光吸收,丰富的光产生载体密度及其快速载流子分离性能。在该研究中,优化的C-USTIO2光催化剂沉积在碳布上,并在LED光照射下进行连续甲苯劣化。结果表明,甲苯去除效率可高于80%,产生高浓度的二氧化碳,优异的循环稳定性超过180分钟。

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