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Synergetic effect of functionalized carbon nanotubes on ZnCr–mixed metal oxides for enhanced solar light-driven photocatalytic performance

机译:官能化碳纳米管对ZnCR混合金属氧化物进行增强太阳光驱动光催化性能的协同作用

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In this work, ZnCr–mixed metal oxides (MMO) hybridized with functionalized carbon nanotubes (A-CNTs) have been successfully fabricated via vacuum calcination of the layered double hydroxide precursors. The structural and morphological characterization of the samples was investigated by multiple techniques such as XRD, SEM, TEM, XPS, BET, Raman and UV-vis DRS. The results showed that A-CNTs were well incorporated into the MMO nanoparticles to form a nanohybrid structure dependent upon intimate interfacial contact. As compared to pristine MMO, the obtained MMO–CNTs nanohybrids exhibited significantly enhanced photocatalytic performance for bisphenol A (BPA) degradation under simulative solar light irradiation, providing powerful evidence for the superiority of the hybridization with A-CNTs. The key role of A-CNTs played in enhancing the photocatalytic activity of the nanohybrids was probably ascribed to the larger surface area, higher visible light absorption and the more efficient restriction of charge carriers recombination.
机译:在该作品中,通过层叠双氢氧化物前体的真空煅烧已经成功地制造了用官能化碳纳米管(A-CNT)杂交的ZnCr-混合金属氧化物(MMO)。通过多种技术研究样品的结构和形态学特性,例如XRD,SEM,TEM,XPS,BET,拉曼和UV-VIS DRS。结果表明,A-CNT良好地掺入MMO纳米颗粒中,以依赖于互连的界面接触而形成纳米组织结构。与原始MMO相比,所获得的MMO-CNT纳米冬次组织在模拟的太阳光照射下表现出对双酚A(BPA)降解的显着增强的光催化性能,为与A-CNT的杂交的优越性提供了强大的证据。在增强纳米冬小时的光催化活性的A-CNT的关键作用可能归因于较大的表面积,较高的可见光吸收和电荷载体重组的更有效的限制。

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