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紫外光照射下氧化锌/银纳米线纳米复合薄膜对罗丹明B的光催化降解

Photocatalytic degradation of rhodamine B using zinc oxide/silver nanowire nanocomposite films under ultraviolet irradiation.

作者信息

Jang Noah, Kim June Soo, Kim Hyunjun, Kim Da Ye, Nam Yujin, Han Maeum, Kong Seong Ho

机构信息

Kyungpook National University, Daegu, Republic of Korea.

出版信息

R Soc Open Sci. 2025 Jun 18;12(6):241967. doi: 10.1098/rsos.241967. eCollection 2025 Jun.

Abstract

Water pollution from industrial and household waste presents significant environmental challenges, particularly owing to the widespread use and toxicity of organic dyes such as rhodamine B (RhB). This study investigates the photocatalytic degradation of RhB using composite films composed of zinc oxide (ZnO) and silver nanowires (AgNWs) under ultraviolet (UV) irradiation. ZnO is well known for its strong photocatalytic activity because of its high charge-carrier mobility and ability to generate reactive oxygen species (ROS). However, its relatively large bandgap (approx. 3.3 eV) limits its light absorption primarily to the UV range, restricting its photocatalytic efficiency under visible light. The incorporation of AgNWs is expected to enhance charge separation, increase electron mobility and introduce localized surface plasmon resonance effects, which contribute to improved light absorption and photocatalytic performance. The ZnO/AgNW composite films were synthesized using a sol-gel method and characterized through scanning electron microscopy and energy-dispersive X-ray spectroscopy to analyse the morphology and elemental composition, X-ray diffraction to confirm the crystallinity structure, and UV-visible spectroscopy to determine optical properties and bandgap energy. The bandgap reduction observed in ZnO/AgNW composites, as confirmed by Tauc plot analysis, is attributed to structural modifications, oxygen vacancy formation and plasmonic interactions that enhance charge transfer and light absorption. This enhanced optical response directly contributed to the superior photocatalytic efficiency of the composite. The reduction in bandgap directly influenced the photocatalytic performance of the ZnO/AgNW composites. A lower bandgap extends light absorption into the visible range, allowing the material to use a broader spectrum of incident light. Furthermore, the enhanced charge-carrier separation and increased ROS generation contributed to superior photocatalytic efficiency. As a result, the ZnO/AgNW composite films achieved a 90% degradation efficiency of RhB within 40 min of UV exposure, demonstrating a significant improvement over conventional ZnO-based photocatalysts. These findings highlight the potential of ZnO/AgNW nanocomposites as efficient, reusable and scalable solutions for water purification and environmental remediation applications.

摘要

工业和家庭废物造成的水污染带来了重大的环境挑战,尤其是由于罗丹明B(RhB)等有机染料的广泛使用及其毒性。本研究调查了在紫外线(UV)照射下,由氧化锌(ZnO)和银纳米线(AgNWs)组成的复合薄膜对RhB的光催化降解。ZnO因其高电荷载流子迁移率和产生活性氧(ROS)的能力而具有很强的光催化活性,这是众所周知的。然而,其相对较大的带隙(约3.3 eV)将其光吸收主要限制在紫外范围内,限制了其在可见光下的光催化效率。预计掺入AgNWs可增强电荷分离、提高电子迁移率并引入局域表面等离子体共振效应,这有助于改善光吸收和光催化性能。采用溶胶-凝胶法合成了ZnO/AgNW复合薄膜,并通过扫描电子显微镜和能量色散X射线光谱分析其形态和元素组成,通过X射线衍射确认结晶结构,通过紫外-可见光谱测定光学性质和带隙能量。通过Tauc图分析证实,在ZnO/AgNW复合材料中观察到的带隙减小归因于结构改性、氧空位形成和等离子体相互作用,这些作用增强了电荷转移和光吸收。这种增强的光学响应直接导致了复合材料优异的光催化效率。带隙的减小直接影响了ZnO/AgNW复合材料的光催化性能。较低的带隙将光吸收扩展到可见光范围内,使材料能够利用更宽的入射光谱。此外,增强的电荷载流子分离和增加的ROS生成有助于提高光催化效率。结果,ZnO/AgNW复合薄膜在紫外线照射40分钟内实现了90%的RhB降解效率,表明与传统的ZnO基光催化剂相比有显著改进。这些发现突出了ZnO/AgNW纳米复合材料作为水净化和环境修复应用的高效、可重复使用和可扩展解决方案的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6fc/12173497/6fd2e7fb76c6/rsos.241967.f001.jpg

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