Rita Meldayani, Iwantono Iwantono, Ari Sulistyo Rini, Yolanda Rati
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引用次数: 0
摘要
纳米技术随着各种合成材料的迅速发展,除了感知工作效率外,还优先考虑安全性和无毒性。基于这些标准有可能进行的合成是ag掺杂ZnO纳米颗粒的类型。以菠萝皮提取物为还原剂,采用生物合成方法制备了氧化锌纳米颗粒。本研究旨在观察在ZnO纳米颗粒中添加Ag的效果。Ag对ZnO的变化百分比分别为1%、3%和5%。将菠萝皮提取物与0.05 M (Zn(no3) 2)·6h2o和0.05 M agno3前驱体溶液混合。溶液在80℃下加热2小时。利用紫外可见光谱(UV-Vis)、x射线衍射(XRD)和扫描电镜(SEM)对生物合成结果进行了表征。紫外可见光谱表明,强吸收发生在波长低于400纳米。ZnO:Ag为3%的样品吸光度最大,纯ZnO样品吸光度最小。XRD表征表明,7个衍射峰的形成发生在31.729°的衍射角(2θ)处;34397°;36214°;47467°;56541°;62.831°;和67.922°。SEM结果表明,ZnO和ZnO:Ag 1%样品的表面形貌为花状和球形,而ZnO:Ag 3%和ZnO:Ag 5%样品的表面形貌为珊瑚岩石。
ANALISA SIFAT FISIS NANOPARTIKEL ZnO DI-DOPING Ag YANG DISINTESIS MENGGUNAKAN METODE BIOSINTESIS
Nanotechnology is developing rapidly with a variety of synthetic materials, apart from the perceived work efficiency, which is also prioritized in terms of safety and non-toxicity. The synthesis that has the potential to be carried out based on these criteria is the type of Ag-doped ZnO nanoparticles. ZnO nanoparticles were prepared by a biosynthetic method using pineapple peel extract as a reducing agent. This study aims to look at the effect of adding Ag to ZnO nanoparticles. The percentage variation of Ag to ZnO is 1%, 3%, and 5%. The pineapple peel extract was mixed with 0.05 M (Zn(NO 3 ) 2 )·6H 2 O and 0.05 M AgNO 3 precursor solutions. The solution was heated at 80 °C for 2 hours. The results of the biosynthesis were characterized using Spectroscopy UV-Vis, X-ray diffraction (XRD), and scanning electron microscopy (SEM). The UV-Vis spectrum informs that strong absorption occurs at wavelengths below 400 nm. The maximum absorption is shown by sample ZnO:Ag 3% and the minimum absorption is shown by the pure ZnO sample. XRD characterization showed that the formation of seven diffraction peaks occurs at a diffraction angle (2θ) of: 31.729°; 34,397°; 36,214°; 47,467°; 56,541°; 62.831°; and 67.922°. The SEM results showed surface morphology of ZnO and ZnO:Ag 1% samples are floral and spherical, while ZnO:Ag 3% and ZnO:Ag 5% samples are coral rocks.