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首页> 外文期刊>Optics & Laser Technology >Customised structural, optical and antibacterial characteristics of cinnamon nanoclusters produced inside organic solvent using 532 nm Q-switched Nd:YAG-pulse laser ablation
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Customised structural, optical and antibacterial characteristics of cinnamon nanoclusters produced inside organic solvent using 532 nm Q-switched Nd:YAG-pulse laser ablation

机译:使用532nm Q开关Nd:YAG-Pulse激光烧蚀,在有机溶剂内产生的结构,光学和抗菌特性。

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摘要

Biomedical values of organic natural cinnamon that are buried in their bulk counterpart can be exposed and customised via nanosizing. Based on this factor, a new type of spherical cinnamon nanoclusters (Cin-NCs) were synthesised using eco-friendly nanosecond pulse laser ablation in liquid (PLAL) approach. As-grown nontoxic Cin-NCs suspended in the citric acid of pH 4.5 (acted as organic solvent) were characterised thoroughly to evaluate their structural, optical and bactericidal properties. The effects of various laser fluences (LF) at the fixed wavelength (532 nm) on the physiochemical properties of these Cin-NCs were determined. The FTIR spectra of the Cin-NCs displayed the symmetric-asymmetric stretching of the functional groups attached to the heterocyclic/cinnamaldehyde compounds. The HR-TEM image of the optimum sample revealed the nucleation of the crystalline spherical Cin-NCs with a mean diameter of approximately 10 +/- 0.3 nm and lattice fringe spacing around 0.14 nm. In addition, the inhibition zone diameter (IZD) and optical density (OD600) of the proposed Cin- NCs were measured to assess their antibacterial potency against the Staphylococcus aureus (IZD approximate to 24 mm) and Escherichia coil (IZD approximate to 25 mm) bacterial strains. The strong UV absorption (in the range of 269 and 310 nm) shown by these NCs was established to be useful for the antibacterial drug development and food treatment.
机译:通过纳米化可以暴露和定制埋入其散装对应物的有机天然肉桂的生物医学价值。基于该因素,在液体(PLAL)方法中,合成了一种新型的球形肉桂纳米团簇(CIN-NCS)。彻底填充悬浮在pH 4.5的柠檬酸中的生长无毒CIN-NCS,以彻底表征以评估其结构,光学和杀菌性能。确定各种激光流量(LF)在固定波长(532nm)上对这些CIN-NCS的生理化学性质的影响。 CIN-NCS的FTIR光谱显示出与杂环/肉桂醛化合物附着的官能团的对称非对称拉伸。最佳样品的HR-TEM图像显示结晶球形CIN-NC的成核,平均直径约为10 +/- 0.3nm,并且格子条纹间隔约为0.14nm。此外,测量所提出的CIN-NCS的抑制区直径(IZD)和光密度(OD600)以评估它们对金黄色葡萄球菌(IZD近似至24mm)和大肠杆菌的抗菌性效力(IZD近似为25 mm)细菌菌株。建立了这些NCS所示的强紫外线吸收(在269和310nm的范围内),以对抗菌药物发育和食物治疗有用。

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