4.7 Article

Z-scheme Ag3PO4/POM/GO heterojunction with enhanced photocatalytic performance for degradation and water splitting

期刊

DALTON TRANSACTIONS
卷 47, 期 17, 页码 6225-6232

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c8dt00431e

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资金

  1. Natural Science Foundation of Shandong Province [ZR2016BB21]
  2. Science and technology plan project of Shandong colleges and Universities [J17KB063]
  3. Talent Team Culturing Plan for Leading Disciplines of University in Shandong Province

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To develop solar light-driven photocatalysts with high activity and structural stability, Ag3PO4/POM/GO heterojunction has been successfully prepared by a facile method at room temperature. Ag3PO4/POM/ GO shows remarkably enhanced activity and stability for photocatalytic degradation and H-2 production from water-splitting under simulated solar light. The degradation rate of Ag3PO4/POM/GO is 1.8 times and 1.2 times those of Ag3PO4 and Ag3PO4/POMs, respectively. H-2 production using Ag3PO4/POM/GO is 2.0 times that of Ag3PO4/GO. The enhanced photocatalytic performance of Ag3PO4/POM/GO is attributed to the increased surface area, electronegativity and structure stability. The Z-scheme system of Ag3PO4/POM/GO effectively promotes charge separation, resulting in enhanced photocatalytic performance under simulated solar light.

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