光催化
罗丹明B
氮化碳
材料科学
纳米片
激进的
电子顺磁共振
纳米颗粒
光化学
化学工程
纳米技术
化学
有机化学
催化作用
核磁共振
工程类
物理
作者
Qiong Wu,Dingze Lu,Boyu Zhang,Kiran Kumar Kondamareddy,Yimei Zeng,Yuhao Zhang,Jiuxin Wang,Min Zhou,D Neena,Hongjuan Hao,Huiqing Fan
标识
DOI:10.1016/j.ijhydene.2021.10.221
摘要
A novel series of CeO 2 nanoparticles (CeNP) loaded two-dimensional (2D) graphite carbon nitride nanosheet (CeNP/g-C 3 N 4 ) composites which possess heterojunction are prepared with different proportions of CeNP by a reliable and straightforward method. The samples were employed to degrade the rhodamine B (RhB) and produce hydrogen. The microstructure, morphology, composition and surface chemical states of the samples are analyzed, and the ability of the photoelectric response is characterized. The characterization ensures uniform loading of CeNP over the g-C 3 N 4 surface and a co-existence of Ce 3+ /Ce 4+ in the CeNP/g-C 3 N 4 composite. The FT-IR spectra have revealed the changes in the local dipole moment of amino groups, vibration mode of the constituent functional group and electronegativity, indicating the electric interaction between CeNP and g-C 3 N 4 . The photocatalytic hydrogen evolution efficiency of the CeNP/g-C 3 N 4 increased initially and then decreased with the increasing of loaded CeNP. The CeNP/g–C 3 N 4 –C with 20 mg of CeNP was found to be the optimum proportion, which exhibited outstanding separation efficiency of the photo-generated carriers. The electron spin-resonance (ESR) spectra exhibit that the production of superoxide free radicals (∙O 2 − ) was much higher than that of hydroxyl free radicals (∙OH) indicating that ∙O 2 − species play a predominant role in the photocatalytic action. The mechanism for enhanced photocatalytic activity of the CeNP/g-C 3 N 4 is attributed to the interfacial optimization, which improved the photo-generated carrier separation. A sustainable approach for the interfacial optimization of CeO 2 nanoparticles loaded two-dimensional graphite carbon nitride with synergistic enhancement of visible-light-driven photoelectric and photocatalytic hydrogen evolution is reported. • A novel series of CeNP/g-C 3 N 4 heterojunction were prepared by a simple and reliable method. • Appropriate CeNP modification can enhance the separation efficiency of the charge carriers. • The CeNP/g–C 3 N 4 –C showed optimal visible-light photocatalytic hydrogen production. • The ESR spectra indicated that·O 2 − and h + played a major role during the degradation process. • The enhanced photocatalysis ascribed to interfacial optimization of double heterojunction.
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