School of Physics, Universiti Sains Malaysia (USM), 11800, Penang, Pulau Penang, Malaysia.
Department of medical instrumentation engineering, Dijlah university college, Baghdad, Iraq.
Sci Rep. 2022 Jun 22;12(1):10549. doi: 10.1038/s41598-022-14339-y.
Laser ablation synthesis in liquid solution (PLAL) is a green technique that allows for the physical formation of nanomaterials. This study indicates the preparation of stable gold nanoparticles (AuNPs) in Gum Arabic (GA) solution via laser ablation as a CT contrast agent. The optical properties were achieved using the absorption spectroscopic technique whereas the morphology and size distribution were investigated by TEM and ImageJ software. TEM image shows greater stability and spherical shape of GA-AuNPs with smaller size at 1.85 ± 0.99 nm compared to AuNPs without GA. The absorption spectrum of pure AuNPs has a lower absorption peak height in the visible range at λ = 521 nm, while the spectrum of GA-AuNPs has a higher plasmon peak height at λ = 514 nm with a blue shift towards lower wavelengths. The concentration of GA that dissolved in 10 mL of DI water via laser ablation is set at 20 mg. Increasing the number of pulses has only a minor effect on particle size distribution, which remains tiny in the nanometer range (less than 3 nm). For energies greater than 200 mJ, there is a blue shift toward shorter wavelengths. As the concentration of GA-AuNPs increases, the CT number is also increased indicating good image contrast. It can be concluded that there is a positive and significant influence of GA as a reducing agent for AuNPs, and a contrast agent for CT imaging which highlights its superiority in future medical applications.
激光消融在液相中的合成(PLAL)是一种绿色技术,可实现纳米材料的物理形成。本研究表明,通过激光烧蚀在阿拉伯树胶(GA)溶液中制备稳定的金纳米粒子(AuNPs)作为 CT 造影剂。通过吸收光谱技术实现了光学性质,而形态和尺寸分布则通过 TEM 和 ImageJ 软件进行了研究。TEM 图像显示,与没有 GA 的 AuNPs 相比,GA-AuNPs 具有更小的尺寸(1.85 ± 0.99nm),具有更好的稳定性和球形。纯 AuNPs 的吸收光谱在可见波长范围内的吸收峰较低,在 λ = 521nm 处,而 GA-AuNPs 的吸收光谱在 λ = 514nm 处具有更高的等离子体峰,并且向较低波长方向蓝移。通过激光烧蚀溶解在 10mL DI 水中的 GA 的浓度设定为 20mg。增加脉冲数对粒径分布的影响很小,粒径仍保持在纳米范围内(小于 3nm)。对于能量大于 200mJ 的情况,会向较短波长发生蓝移。随着 GA-AuNPs 浓度的增加,CT 值也增加,表明图像对比度良好。可以得出结论,GA 作为 AuNPs 的还原剂和 CT 成像的造影剂具有积极且显著的影响,突出了其在未来医学应用中的优势。