Photocatalytic Degradation of Hydrothermally Grown Zinc Oxide Nanorods on a Silver Seed Layer

Citations

WEB OF SCIENCE

20
Citations

SCOPUS

20

초록

Photocatalytic degradation of organic pollutants has emerged as a promising green technology. In this study, we present a facile approach to enhance photocatalytic performance by fabricating zinc oxide (ZnO) nanorods (NRs)/silver (Ag) seed layer heterojunctions. The heterojunction fabrication process involves the deposition of a Ag seed layer via spin coating, followed by hydrothermal growth of vertically aligned ZnO NRs (similar to 2 +/- 0.20 mu m length, similar to 200 nm diameter) on the seed layer at 80 +/- 2 degrees C for 80 min. The growth of ZnO NRs on the Ag seed layer formed a metal-semiconductor heterojunction at their contact surfaces, significantly increasing the surface-to-volume ratio. The appearance of a double band regime at 3.06 eV for Ag and 3.37 eV for ZnO NRs confirms the formation of the Ag-ZnO heterojunctions. Photocatalytic efficacy is demonstrated by the degradation efficiency of methylene blue under UV light irradiation, surpassing previous approaches using ZnO-based photocatalysts. This enhanced degradation efficiency is attributed to the synergistic effects between ZnO and Ag, promoting efficient charge separation and reducing photocorrosion. This research provides a promising approach for designing highly efficient photocatalysts aimed at environmental remediation.

키워드

DOPED ZNO NANORODSMETHYLENE-BLUEHIERARCHICAL PHOTOCATALYSTSCATALYTIC PHOTODEGRADATIONAG NANOPARTICLESFACILE SYNTHESISMESHES
제목
Photocatalytic Degradation of Hydrothermally Grown Zinc Oxide Nanorods on a Silver Seed Layer
저자
Hossain, EliusLee, Jin-SolKwon, Kye-Si
DOI
10.1021/acsomega.4c09121
발행일
2025-02
유형
Article
저널명
ACS Omega
10
6
페이지
5708 ~ 5721