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首页> 外文期刊>Nanotechnology >Photocatalytic applications with CdS ? block copolymer/exfoliated graphene nanoensembles: hydrogen generation and degradation of Rhodamine B
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Photocatalytic applications with CdS ? block copolymer/exfoliated graphene nanoensembles: hydrogen generation and degradation of Rhodamine B

机译:CdS的光催化应用?嵌段共聚物/片状石墨烯纳米复合材料:氢气的生成和若丹明B的降解

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Amphiphilic block copolymer poly(isoprene-b-acrylic acid) (PI-b-PAA) was used to stabilize exfoliated graphene in water, allowing the immobilization of semiconductor CdS nanoparticles forming CdS ? PI-b-PAA/graphene. Characterization using high-resolution transmission electron microscopy and energy-dispersive x-ray spectroscopy proved the success of the preparation method and revealed the presence of spherical CdS. Moreover, UV–Vis and photoluminescence assays suggested that electronic interactions within CdS ? PI-b-PAA/graphene exist as evidenced by the significant quenching of the characteristic emission of CdS by exfoliated graphene. Photoillumination of CdS ? PI-b-PAA/graphene, in the presence of ammonium formate as a quencher for the photogenerated holes, resulted in the generation of hydrogen by water splitting, monitored by the reduction of 4-nitroaniline to benzene-1,4-diamine (>80 ± 4% at 20 min; 100% at 24 min), much faster and more efficient compared to when reference CdS ? PI-b-PAA was used as the photocatalyst (<30 ± 3% at 20 min; 100% at 240 min). Moreover, Rhodamine B was photocatalytically degraded by CdS ? PI-b-PAA/graphene, with fast kinetics under visible light illumination in the presence of air. The enhancement of both photocatalytic processes by CdS ? PI-b-PAA/graphene was rationalized in terms of effective separation of holes and electrons, contrary to reference CdS ? PI-b-PAA, in which rapid recombination of the hole– electron pair is inevitable due to the absence of exfoliated graphene as a suitable electron acceptor.
机译:使用两亲性嵌段共聚物聚(异戊二烯-b-丙烯酸)(PI-b-PAA)来稳定水中的脱落石墨烯,从而使形成CdSα的半导体CdS纳米粒子固定化。 PI-b-PAA /石墨烯。使用高分辨率透射电子显微镜和能量色散X射线光谱进行表征证明了制备方法的成功,并揭示了球形CdS的存在。此外,UV-Vis和光致发光测定表明CdS中的电子相互作用? PI-b-PAA /石墨烯的存在可以通过剥落的石墨烯对CdS的特征发射进行显着猝灭来证明。 CdS的光照明PI-b-PAA /石墨烯在甲酸铵作为光生空穴的猝灭剂的情况下,通过水分解产生氢,通过将4-硝基苯胺还原为苯-1,4-二胺来监测(> 20分钟时为80±4%; 24分钟时为100%),与参考CdS? PI-b-PAA用作光催化剂(20分钟时<30±3%; 240分钟时100%)。此外,罗丹明B被CdSα光催化降解。 PI-b-PAA /石墨烯,在空气中在可见光照射下具有快速动力学。 CdS®对两种光催化过程的增强作用PI-b-PAA /石墨烯在有效分离空穴和电子方面是合理的,这与参考CdS? PI-b-PAA,由于没有剥落的石墨烯作为合适的电子受体,不可避免地会发生空穴-电子对的快速重组。

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