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ZnO nanoparticles sensitized by CuInZnxS2+x quantum dots as highly efficient solar light driven photocatalysts

机译:CuInZnxS2 +敏化的ZnO纳米粒子x量子点作为高效的太阳光驱动光催化剂

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摘要

Alloyed CuInZnxS2+ x (ZCIS) quantum dots (QDs) were successfully associated to ZnO nanoparticles by a thermal treatment at 400 °C for 15 min. The ZnO/ZCIS composite was characterized by TEM, SEM, XRD, XPS and UV–vis absorption spectroscopy. ZCIS QDs, with an average diameter of ≈4.5 nm, were found to be homogeneously distributed at the surface of ZnO nanoparticles. ZCIS-sensitized ZnO nanoparticles exhibit a high photocatalytic activity under simulated solar light irradiation for the degradation of Orange II dye (>95% degradation after 180 min of irradiation at an intensity of 5 mW/cm2). The heterojunction built between the ZnO nanoparticle and ZCIS QDs not only extends the light adsorption range by the photocatalyst but also acts to decrease electron/hole recombination. Interestingly, the ZnO/ZCIS composite was found to produce increased amounts of H2O2 and singlet oxygen 1O2 compared to ZnO, suggesting that these reactive oxygen species play a key role in the photodegradation mechanism. The activity of the ZnO/ZCIS composite is retained at over 90% of its original value after ten successive photocatalytic runs, indicating its high stability and its potential for practical photocatalytic applications.
机译:合金化的CuInZnxS2 + x(ZCIS)量子点(QDs)通过在400°C下热处理15分钟成功地与ZnO纳米颗粒相关联。 ZnO / ZCIS复合材料通过TEM,SEM,XRD,XPS和UV-vis吸收光谱进行表征。发现平均直径为≈4.5nm的ZCIS量子点均匀分布在ZnO纳米粒子的表面。 ZCIS敏化的ZnO纳米粒子在模拟太阳光照射下具有较高的光催化活性,可降解Orange II染料(以5 mW / cm 2 的强度照射180分钟后降解> 95%)。在ZnO纳米粒子和ZCIS QD之间建立的异质结不仅扩展了光催化剂的光吸收范围,而且还起到了减少电子/空穴复合的作用。有趣的是,与ZnO相比,发现ZnO / ZCIS复合物可产生更多的H2O2和单线态氧 1 O2,这表明这些活性氧在光降解机理中起关键作用。经过十次连续的光催化运行,ZnO / ZCIS复合材料的活性保持在其原始值的90%以上,表明其高稳定性和在实际光催化应用中的潜力。

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