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氧化镁纳米颗粒的绿色合成及其抗菌性能。

Green synthesis of MgO nanoparticles and its antibacterial properties.

作者信息

Rotti Rajeshwari B, Sunitha D V, Manjunath Ramya, Roy Arpita, Mayegowda Shilpa Borehalli, Gnanaprakash A P, Alghamdi Saad, Almehmadi Mazen, Abdulaziz Osama, Allahyani Mamdouh, Aljuaid Abdulelah, Alsaiari Ahad Amer, Ashgar Sami S, Babalghith Ahmad O, Abd El-Lateef Amal Ezzat, Khidir Elshiekh B

机构信息

Department of Physics, School of Applied Sciences, REVA University, Bangalore, India.

Department of Biotechnology, School of Applied Sciences, REVA University, Bangalore, India.

出版信息

Front Chem. 2023 Mar 23;11:1143614. doi: 10.3389/fchem.2023.1143614. eCollection 2023.

Abstract

Magnesium oxide nanostructured particles (NP) were prepared using a simple solution combustion technique using different leaf extracts such as (Mango - Ma), (Neem-Ne), and (Papaya-Pa) as surfactants. The highly crystalline phase of MgO nanostructures was confirmed by PXRD and FTIR studies for 2 h 500°C calcined samples. To analyze the characteristics of obtained material-MaNP, NeNP, and PaNP for dosimetry applications, thermoluminescence (TL) studies were carried out for Co-60 gamma rays irradiated samples in the dose range 10-50 KGy; PaNP and NeNP exhibited well-defined glow curve when compared with MaNP samples. In addition, it was observed that the TL intensity decreases, with increase in gamma dose and the glow peak temperature is shifted towards the higher temperature with the increase in heating rate. The glow peak was segregated using glow curve deconvolution and thermal cleaning method. Kinetic parameters estimated using Chen's method, trap depth (E), and frequency factor (s) were found to be 0.699, 7.408, 0.4929, and 38.71, 11.008, and 10.71 for PaNP, NeNP, and MaNP respectively. The well-resolved glow curve, good linear behavior in the dose range of 10-50, KGy, and less fading were observed in PaNP as compared with MaNP and NeNP. Further, the antibacterial activity was checked against human pathogens such as and A visible zone of clearance was observed at 200 and 100 μg/mL by the PaNP and NeNP, indicating the death of colonies by the nanoparticles. Therefore, PaNP nanomaterial is a potential phosphor material for dosimetry and antibacterial application compared to NeNP and MaNP.

摘要

采用简单的溶液燃烧技术,以不同的叶提取物(如芒果叶提取物 - Ma、印楝叶提取物 - Ne 和番木瓜叶提取物 - Pa)作为表面活性剂,制备了氧化镁纳米结构颗粒(NP)。通过对在 500°C 煅烧 2 小时的样品进行 PXRD 和 FTIR 研究,证实了 MgO 纳米结构的高结晶相。为了分析所得材料 MaNP、NeNP 和 PaNP 在剂量测定应用中的特性,对经 Co - 60γ射线辐照、剂量范围为 10 - 50 KGy 的样品进行了热释光(TL)研究;与 MaNP 样品相比,PaNP 和 NeNP 呈现出明确的发光曲线。此外,观察到随着γ剂量增加,TL 强度降低,并且随着加热速率增加,发光峰温度向更高温度移动。使用发光曲线去卷积和热清洗方法分离出发光峰。采用 Chen 方法估计的动力学参数,PaNP、NeNP 和 MaNP 的陷阱深度(E)和频率因子(s)分别为 0.699、7.408、0.4929 和 38.71、11.008、10.71。与 MaNP 和 NeNP 相比,PaNP 具有分辨良好的发光曲线、在 10 - 50 KGy 剂量范围内良好的线性行为以及较小的褪色。此外,检测了对人类病原体如[此处原文缺失病原体名称]的抗菌活性。PaNP 和 NeNP 在 200 和 100 μg/mL 时观察到明显的抑菌圈,表明纳米颗粒导致菌落死亡。因此,与 NeNP 和 MaNP 相比,PaNP 纳米材料是一种用于剂量测定和抗菌应用的潜在磷光材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/154c/10078987/94eb9b41020d/fchem-11-1143614-g001.jpg

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