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Mg掺杂ZnO纳米棒通过分子对接分析显示出改善的光催化降解和抗菌潜力。

Doping of Mg on ZnO Nanorods Demonstrated Improved Photocatalytic Degradation and Antimicrobial Potential with Molecular Docking Analysis.

作者信息

Ikram Muhammad, Aslam Sidra, Haider Ali, Naz Sadia, Ul-Hamid Anwar, Shahzadi Anum, Ikram Mujtaba, Haider Junaid, Ahmad Syed Ossama Ali, Butt Alvina Rafiq

机构信息

Solar Cell Applications Research Lab, Department of Physics, Government College University, Lahore, Punjab, 54000, Pakistan.

Physics Department, Lahore Garrison University, Lahore, Punjab, 54000, Pakistan.

出版信息

Nanoscale Res Lett. 2021 May 1;16(1):78. doi: 10.1186/s11671-021-03537-8.

Abstract

Various concentrations of Mg-doped ZnO nanorods (NRs) were prepared using co-precipitation technique. The objective of this study was to improve the photocatalytic properties of ZnO. The effect of Mg doping on the structure, phase constitution, functional groups presence, optical properties, elemental composition, surface morphology and microstructure of ZnO was evaluated with XRD, FTIR, UV-Vis spectrophotometer, EDS, and HR-TEM, respectively. Optical absorption spectra obtained from the prepared samples showed evidence of blueshift upon doping. XRD results revealed hexagonal wurtzite phase of nanocomposite with a gradual decrease in crystallite size with Mg addition. PL spectroscopy showed trapping efficiency and migration of charge carriers with electron-hole recombination behavior, while HR-TEM estimated interlayer d-spacing. The presence of chemical bonding, vibration modes and functional groups at the interface of ZnO was revealed by FTIR and Raman spectra. In this study, photocatalytic, sonocatalytic and sonophotocatalytic performance of prepared NRs was systematically investigated by degrading a mixture of methylene blue and ciprofloxacin (MBCF). Experimental results suggested that improved degradation performance was shown by Mg-doped ZnO NRs. We believe that the product synthesized in this study will prove to be a beneficial and promising photocatalyst for wastewater treatment. Conclusively, Mg-doped ZnO exhibited substantial (p < 0.05) efficacy against gram-negative (G-ve) as compared to gram-positive (G+ve) bacteria. In silico molecular docking studies of Mg-doped ZnO NRs against DHFR (binding score: - 7.518 kcal/mol), DHPS (binding score: - 6.973 kcal/mol) and FabH (- 6.548 kcal/mol) of E. coli predicted inhibition of given enzymes as possible mechanism behind their bactericidal activity.

摘要

采用共沉淀技术制备了不同浓度的镁掺杂氧化锌纳米棒(NRs)。本研究的目的是提高氧化锌的光催化性能。分别用X射线衍射仪(XRD)、傅里叶变换红外光谱仪(FTIR)、紫外可见分光光度计、能谱仪(EDS)和高分辨透射电子显微镜(HR-TEM)评估了镁掺杂对氧化锌的结构、相组成、官能团存在情况、光学性质、元素组成、表面形貌和微观结构的影响。从制备的样品获得的光吸收光谱显示掺杂后有蓝移现象。XRD结果表明纳米复合材料为六方纤锌矿相,随着镁的添加,微晶尺寸逐渐减小。光致发光光谱显示了电荷载流子的俘获效率和迁移以及电子-空穴复合行为,而HR-TEM估算了层间d间距。FTIR和拉曼光谱揭示了氧化锌界面处的化学键、振动模式和官能团的存在。在本研究中,通过降解亚甲基蓝和环丙沙星的混合物(MBCF)系统地研究了制备的纳米棒的光催化、声催化和声光催化性能。实验结果表明,镁掺杂氧化锌纳米棒表现出了改善的降解性能。我们相信,本研究中合成的产物将被证明是一种用于废水处理的有益且有前景的光催化剂。最后,与革兰氏阳性(G+ve)细菌相比,镁掺杂氧化锌对革兰氏阴性(G-ve)细菌表现出显著(p < 0.05)的抗菌效果。对大肠杆菌的二氢叶酸还原酶(DHFR,结合分数:-7.518 kcal/mol)、二氢蝶酸合酶(DHPS,结合分数:-6.973 kcal/mol)和FabH(-6.548 kcal/mol)进行的镁掺杂氧化锌纳米棒的计算机辅助分子对接研究预测,对给定酶的抑制作用是其杀菌活性背后的可能机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e8a/8088420/10bca59ebc07/11671_2021_3537_Fig1_HTML.jpg

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