Structural and antibacterial properties of copper oxide nanoparticles: A study on the effect of calcination temperature

S. Motshekga
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引用次数: 0

Abstract

Nanoparticles of copper oxide were synthesized by the simple precipitation method. The influence of calcination temperature on the structural characteristics and antibacterial activity of the nanoparticles were evaluated. The nanoparticles were analyzed by Bruner-Emmett-Teller (BET) surface area and pore size analyzer, X-ray diffraction, transmission electron microscope and scanning electron microscope. The findings demonstrated the formation of copper oxide nanoparticles showing a monoclinic phase. Before calcination, the nanoparticles showed a high BET surface area with rod shape morphology and size range between 18–70 nm and after calcination, irregular spherical-like morphology with size range of 20–200 nm was observed. However, it was evident that the BET surface area decreased gradually with increasing calcination temperature, while the nanoparticle size increased forming an irregular spherical shape. Subsequently, the copper oxide nanoparticles demonstrated that they are highly effective for bacteria inactivation. The inactivation activity was found to be more effective with uncalcined nanoparticles than with calcined nanoparticles. This was due to the large nanoparticle sizes and the decrease in surface area obtained after calcination. Thus, it was noted that calcination of the as-prepared nanoparticles significantly affects the structural and antibacterial properties. Hence, for antibacterial application, calcination was not necessary as the nanoparticles showed excellent antibacterial results.
纳米氧化铜的结构和抗菌特性:煅烧温度的影响研究
采用简单沉淀法合成了纳米氧化铜颗粒。评估了煅烧温度对纳米颗粒结构特征和抗菌活性的影响。布鲁纳-埃美特-泰勒(BET)表面积和孔径分析仪、X 射线衍射、透射电子显微镜和扫描电子显微镜对纳米粒子进行了分析。研究结果表明,氧化铜纳米粒子的形成呈现单斜相。煅烧前,纳米颗粒显示出较高的 BET 表面积,呈棒状形态,尺寸范围在 18-70 nm 之间;煅烧后,纳米颗粒呈不规则球状形态,尺寸范围在 20-200 nm 之间。然而,很明显,随着煅烧温度的升高,BET 表面积逐渐减小,而纳米颗粒的尺寸增大,形成了不规则的球形。随后,氧化铜纳米粒子证明了其对细菌的高效灭活作用。与煅烧过的纳米粒子相比,未煅烧过的纳米粒子的灭活效果更好。这是因为煅烧后的纳米颗粒尺寸大,表面积减小。由此可见,煅烧制备的纳米粒子会严重影响其结构和抗菌特性。因此,在抗菌应用中,煅烧是不必要的,因为纳米粒子显示出了卓越的抗菌效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
6.40
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