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Mn 掺杂 ZnO 纳米复合材料的绿色合成及抗菌和光催化性能的比较研究。

A comparative study on green synthesis and characterization of Mn doped ZnO nanocomposite for antibacterial and photocatalytic applications.

机构信息

Faculty of Medicine, Dalian University of Technology, Dalian, 116024, People's Republic of China.

Department of Biotechnology, Faculty of Chemical and Biological Sciences, The Islamia University of Bahawalpur, Bahawalpur, 63100, Pakistan.

出版信息

Sci Rep. 2024 Mar 29;14(1):7528. doi: 10.1038/s41598-024-58393-0.

Abstract

Biological and green synthesis of nanomaterial is a superior choice over chemical and physical methods due to nanoscale attributes implanted in a green chemistry matrix, have sparked a lot of interest for their potential uses in a variety of sectors. This research investigates the growing relevance of nanocomposites manufactured using ecologically friendly, green technologies. The transition to green synthesis correlates with the worldwide drive for environmentally sound procedures, limiting the use of traditional harsh synthetic techniques. Herein, manganese was decorated on ZnO NPs via reducing agent of Withania-extract and confirmed by UV-spectrophotometry with highest peak at 1:2 ratio precursors, and having lower bandgap energy (3.3 eV). XRD showed the sharp peaks and confirms the formation of nanoparticles, having particle size in range of 11-14 nm. SEM confirmed amorphous tetragonal structure while EDX spectroscopy showed the presence of Zn and Mn in all composition. Green synthesized Mn-decorated ZnO-NPs screened against bacterial strains and exhibited excellent antimicrobial activities against gram-negative and gram-positive bacteria. To check further, applicability of synthesized Mn-decorated Zn nanocomposites, their photocatalytic activity against toxic water pollutants (methylene blue (MB) dye) were also investigated and results showed that 53.8% degradation of MB was done successfully. Furthermore, the installation of green chemistry in synthesizing nanocomposites by using plant extract matrix optimizes antibacterial characteristics, antioxidant and biodegradability, helping to build sustainable green Mn decorated ZnO nanomaterial. This work, explains how biologically friendly Mn-doped ZnO nanocomposites can help reduce the environmental impact of traditional packaging materials. Based on these findings, it was determined that nanocomposites derived from biological resources should be produced on a wide scale to eradicate environmental and water contaminants through degradation.

摘要

生物和绿色合成纳米材料是优于化学和物理方法的选择,因为纳米级属性植入绿色化学基质中,引起了人们对其在各种领域潜在应用的极大兴趣。本研究调查了使用环保、绿色技术制造的纳米复合材料日益增加的相关性。向绿色合成的转变与全球对环境友好程序的推动相关联,限制了传统苛刻合成技术的使用。在此,通过具有最高峰值的还原试剂将锰修饰在 ZnO NPs 上-茄提取物 1:2 比例前体,且具有较低的能带隙能量 (3.3 eV)。XRD 显示出尖锐的峰并证实了纳米颗粒的形成,其粒径在 11-14 nm 范围内。SEM 证实了非晶态四方结构,而 EDX 光谱显示所有组成中都存在 Zn 和 Mn。绿色合成的 Mn 修饰 ZnO-NPs 对细菌菌株进行了筛选,并表现出对革兰氏阴性和革兰氏阳性细菌的优异抗菌活性。为了进一步检查,还研究了合成的 Mn 修饰 Zn 纳米复合材料的适用性,其对有毒水污染物(亚甲蓝 (MB) 染料)的光催化活性。结果表明,MB 成功降解了 53.8%。此外,通过使用植物提取物基质在合成纳米复合材料中引入绿色化学,优化了抗菌特性、抗氧化和生物降解性,有助于构建可持续的绿色 Mn 修饰 ZnO 纳米材料。这项工作解释了如何通过使用环保友好的 Mn 掺杂 ZnO 纳米复合材料来帮助减少传统包装材料对环境的影响。基于这些发现,确定应该大规模生产基于生物资源的纳米复合材料,以通过降解消除环境和水污染物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc23/10980724/152f099f4067/41598_2024_58393_Fig1_HTML.jpg

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