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利用烟草茎提取物介导的绿色合成方法设计铜掺杂氧化锌纳米粒子,以提高太阳能电池的效率和光催化降解亚甲基蓝。

Designing copper-doped zinc oxide nanoparticle by tobacco stem extract-mediated green synthesis for solar cell efficiency and photocatalytic degradation of methylene blue.

机构信息

Department of Occupational Health and Safety, Siirt University, Siirt, Turkey.

Department of Chemical Engineering, Istanbul Technical University, Maslak, Istanbul, Turkey.

出版信息

Int J Phytoremediation. 2024 Nov;26(13):2183-2193. doi: 10.1080/15226514.2024.2379605. Epub 2024 Jul 22.

Abstract

This study presents the green synthesis of copper-doped zinc oxide (Cu-doped ZnO) nanoparticles using tobacco stem (TS) extract. The environmentally friendly synthesis method ensures distinct features, high efficiency, and applicability in various fields, particularly in solar cell technology and photocatalytic applications. ZnO nanostructures are investigated due to their unique properties, cost-effectiveness, and broad range of applications. The nanoparticles are synthesized with varying Cu concentrations, and their structural, morphological, and compositional characteristics are thoroughly analyzed. The Cu-doped ZnO nanoparticles exhibit improved properties, such as increased surface area and reduced particle size, attributed to the incorporation of Cu dopants. The green synthesis approach using TS extract serves as a stabilizing agent and avoids the toxicity associated with chemical methods. Characterization techniques including SEM, TEM, EDX, FTIR, and XRD confirm the successful synthesis of the nanoparticles. Photocatalytic degradation studies reveal that the 5% Cu-doped ZnO exhibits the highest photocatalytic activity against methylene blue, attributed to synergistic effects between Cu and ZnO, including oxygen vacancy and electron-hole pair recombination rate suppression. The photocatalytic mechanism involves the generation of superoxide and hydroxyl radicals, leading to methylene blue degradation. Furthermore, the Cu-doped ZnO nanoparticles demonstrate promising photovoltaic performance, with the optimal efficiency observed at a 5% Cu concentration. The study suggests that Cu-doped ZnO has the potential to enhance solar cell efficiency and could serve as an alternative material in solar cell applications. Future research should focus on refining Cu-doped ZnO for further improvements in solar energy conversion efficiency.

摘要

本研究采用烟草茎(TS)提取物展示了铜掺杂氧化锌(Cu-doped ZnO)纳米粒子的绿色合成。这种环保的合成方法具有明显的特点、高效率和在各个领域的适用性,特别是在太阳能电池技术和光催化应用中。由于 ZnO 纳米结构具有独特的性质、成本效益和广泛的应用,因此对其进行了研究。通过改变 Cu 浓度合成了纳米粒子,并对其结构、形态和组成特性进行了全面分析。Cu 掺杂 ZnO 纳米粒子表现出改善的性能,如增加的比表面积和减小的粒径,这归因于 Cu 掺杂剂的掺入。使用 TS 提取物的绿色合成方法作为稳定剂,避免了与化学方法相关的毒性。SEM、TEM、EDX、FTIR 和 XRD 等表征技术证实了纳米粒子的成功合成。光催化降解研究表明,5%Cu 掺杂 ZnO 对亚甲基蓝表现出最高的光催化活性,这归因于 Cu 和 ZnO 之间的协同效应,包括氧空位和电子-空穴对复合速率的抑制。光催化机制涉及超氧自由基和羟基自由基的生成,导致亚甲基蓝的降解。此外,Cu 掺杂 ZnO 纳米粒子表现出有前途的光伏性能,在 5%Cu 浓度下观察到最佳效率。该研究表明,Cu 掺杂 ZnO 有可能提高太阳能电池的效率,并可能成为太阳能电池应用中的替代材料。未来的研究应侧重于改进 Cu 掺杂 ZnO,以进一步提高太阳能转换效率。

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