利用麝香植物提取物绿色合成氧化锌纳米棒的新方法:氢氧化铵和前体浓度的影响

Peyman K. Aspoukeh, Azeez A. Barzinjy, Samir M. Hamad
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引用次数: 0

摘要

摘要:本研究介绍了一种在玻璃基板上以麝香植物提取物为原料合成氧化锌纳米棒(ZnO NRs)的绿色方法。该研究深入探讨了氢氧化铵和前驱体浓度对ZnO纳米粒子的形貌、尺寸、排列和晶体结构的复杂影响。通过系统实验发现,这些物质的特定浓度对纳米棒的形成和性能起着至关重要的作用。值得注意的是,低浓度的前驱体与高浓度的氢氧化铵耦合可以得到排列良好的六方ZnO NRs,具有显著的长径比。这些浓度的变化也会影响纳米棒的长度、直径和排列。这些发现得到了多种分析技术的证实,包括透射和扫描电子显微镜、x射线衍射、紫外可见光谱和能量色散x射线分析。紫外可见光谱进一步揭示了ZnO NPs的光学性质和带隙能,而EDX分析证实了元素组成。这项工作代表了生态友好型纳米材料合成的重大进步,提供了对排列ZnO NRs的控制制造的详细见解。它的创新方法和对影响因素的广泛研究使它对纳米科学领域做出了宝贵的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel approach to the green synthesis of zinc oxide nanorods using Thymus kotschyanus plant extract: Effect of Ammonium hydroxide and precursor concentration
Abstract This research introduces a pioneering green method for synthesizing zinc oxide nanorods (ZnO NRs) on a glass substrate using Thymus kotschyanus plant extract. The study delves into the intricate effects of ammonium hydroxide and precursor concentrations on the morphology, size, alignment, and crystalline structure of ZnO NRs. Through systematic experimentation, it was found that specific concentrations of these substances play vital roles in the formation and properties of the nanorods. Notably, a low concentration of the precursor coupled with a high concentration of ammonium hydroxide led to well-aligned hexagonal ZnO NRs with a remarkable aspect ratio. Variations in these concentrations were also found to influence the length, diameter, and alignment of the nanorods. The findings were corroborated using a diverse array of analytical techniques, including transmission and scanning electron microscopy, x-ray diffraction, UV–vis spectroscopy, and energy-dispersive x-ray analysis. The UV–vis spectra provided further insights into the optical properties and band gap energy of the ZnO NPs, while EDX analysis confirmed the elemental composition. This work represents a significant advancement in eco-friendly nanomaterial synthesis, providing detailed insights into the controlled fabrication of aligned ZnO NRs. Its innovative approach and extensive investigation into influencing factors make it a valuable contribution to the field of nanoscience.
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CiteScore
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