Band-Gap Engineering of Layered Perovskites by Cu Spacer Insertion as Photocatalysts for Depollution Reaction

Author:

Raciulete Monica,Anastasescu Crina,Papa FloricaORCID,Atkinson IrinaORCID,Bradu CorinaORCID,Negrila Catalin,Eftemie Diana-Ioana,Culita Daniela C.ORCID,Miyazaki Akane,Bratan Veronica,Pandele-Cusu Jeanina,Munteanu Cornel,Dobrescu Gianina,Sandulescu Alexandra,Balint Ioan

Abstract

A multi-step ion-exchange methodology was developed for the fabrication of Cu(LaTa2O7)2 lamellar architectures capable of wastewater depollution. The (001) diffraction line of RbLaTa2O7 depended on the guest species hosted by the starting material. SEM and TEM images confirmed the well-preserved lamellar structure for all intercalated layered perovskites. The UV–Vis, XPS, and photocurrent spectroscopies proved that Cu intercalation induces a red-shift band gap compared to the perovskite host. Moreover, the UV–Vis spectroscopy elucidated the copper ions environment in the Cu-modified layered perovskites. H2-TPR results confirmed that Cu species located on the surface are reduced at a lower temperature while those from the interlayer occur at higher temperature ranges. The photocatalytic degradation of phenol under simulated solar irradiation was used as a model reaction to assess the performances of the studied catalysts. Increased photocatalytic activity was observed for Cu-modified layered perovskites compared to RbLaTa2O7 pristine. This behavior resulted from the efficient separation of photogenerated charge carriers and light absorption induced by copper spacer insertion.

Funder

MINISTRY OF RESEARCH, INNOVATION, AND DIGITIZATION, CNCS/CCCDI-UEFISCDI

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis,General Environmental Science

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