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NaOH-induced formation of 3D flower-sphere BiOBr/BiOBr with proper-oxygen vacancies via in-situ self-template phase transformation method for antibiotic photodegradation. | LitMetric

NaOH-induced formation of 3D flower-sphere BiOBr/BiOBr with proper-oxygen vacancies via in-situ self-template phase transformation method for antibiotic photodegradation.

Sci Total Environ

School of Chemistry and Material Science, Jiangsu Provincial Key Laboratory of Materials Cycling and Pollution Control, Nanjing Normal University, Nanjing 210046, China; Jiangsu Key Laboratory of Chemical Pollution Control and Resources Reuse, Nanjing University of Science and Technology, Nanjing 210094, China. Electronic address:

Published: May 2020

In this study, a novel 3D flower-sphere BiOBr/BiOBr with proper-oxygen vacancies (OV) was successfully synthesized by using 3D BiOBr as a self-sacrificed template, NaOH as a structure-driving reagent and midwifery agent of OV. The synthesis mechanism was systematically studied. It revealed that BiOBr lamina generated via in-situ phase transfer tightly interspersed in the interior and surface of 3D BiOBr hierarchical structures; calcination temperature, stirring time and -OH concentration can optimize the composition and structure of materials. Also, the calcination conditions (temperatures and air or N atmosphere) can regulate the OV's concentration. Ultimately, 3D hierarchical architectures, the optimal heterojunction composition and OV with proper concentrations three positive factors synergistically promoted the photoelectric activity of BiOBr/BiOBr-OV, making it exhibit ultrahigh photocatalytic activity for antibiotic photodegradation (tetracycline, TC; ciprofloxacin, CIP). We believe the synthesis methods and design idea mentioned in this paper have high instructive significance to prepare high-performance materials.

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Source
http://dx.doi.org/10.1016/j.scitotenv.2020.136809DOI Listing

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