Controlling the surface chemistry of graphene oxide: Key towards efficient ZnO-GO photocatalysts

被引:51
作者
Victor-Roman, Sandra [1 ]
Garcia-Bordeje, Enrique [1 ]
Hernandez-Ferrer, Javier [1 ]
Gonzalez-Dominguez, Jose M. [1 ]
Anson-Casaos, Alejandro [1 ]
Silva, Adrian M. T. [2 ]
Maser, Wolfgang K. [1 ]
Benito, Ana M. [1 ]
机构
[1] CSIC, Inst Carboquim ICB, C Miguel Luesma Castan 4, E-50018 Zaragoza, Spain
[2] Univ Porto, Fac Engn, Lab Separat & React Engn, Lab Catalysis & Mat LSRE, Rua Dr Roberto Frias, P-4200465 Porto, Portugal
关键词
Graphene oxide; Zinc oxide; ZnO-GO hybrid; Photocatalysis; Surface chemistry; METHYLENE-BLUE; RAMAN-SCATTERING; COMPOSITES; DEGRADATION; HYBRID; PHOTOLUMINESCENCE; NANOPARTICLES; NANORODS; PHOTODEGRADATION; PHOTOACTIVITY;
D O I
10.1016/j.cattod.2019.05.049
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Graphene oxide (GO) and related materials are widely reported to enhance the photocatalytic activity of zinc oxide. However, the origin of the observed performance improvements remains elusive and studies contributing to a deeper understanding of this critical issue are largely missing. In this work, we have prepared a set of benchmark ZnO-GO hybrid materials in order to systematically put under closer scrutiny the influence of the surface chemistry of GO on the photocatalytic degradation of methylene blue. The set of ZnO-GO hybrids has been synthesized in an ultrasonication process involving ZnO nanoparticles obtained in a microwave synthesis process and GO with three distinct oxidation degrees, employed in three different loading fractions. Structural and physical-chemical characterization by XRD, FTIR, Raman, UV-vis, photoluminescence and spectroscopy and XPS, consistently demonstrate the importance of the surface chemistry of GO for establishing photo-induced charge-transfer interface interactions with ZnO, facilitating the enhancement of the catalytic activity of the ZnO-GO catalyst. Optimized interface interactions thus enabled the design of a ZnO-GO catalyst exhibiting a conversion rate of 80% obtained in a time of 70 min and at a catalyst concentration of only 0.045 mg/mL.
引用
收藏
页码:350 / 360
页数:11
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