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Size-Controlled Synthesis of MgO Nanoparticles and the Assessment of Their Bactericidal Capacity

机译:MgO纳米粒子的大小控制合成及其杀菌能力的评估

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The present work focuses on the development of a reproducible and cost-effective size-controlled synthesis route for nanoscale MgO and the preliminary assessment of its bactericide capacity as a function of crystal size. Nanoscale MgO was produced through the thermal decomposition of Mg-carbonate hydrate precursor (hydromagnesite) synthesized in aqueous phase. The exclusive formation of the MgO phase, with an average crystallite size between 7 and 13 ± 1 nm, was evidenced by X-Ray Diffraction and HRTEM analyses. Fourier Transform - Infrared spectroscopy confirmed the evolution of the precursor into the desired MgO structure. The bactericidal tests were conducted by measuring the optical density at 600 nm of E. coli in presence of MgO nanoparticles of specific sizes. MgO nanocrystals with average crystallite sizes of 13nm inhibited bacterial growth up to 35% at 500 mg MgO/L. The mechanism of inhibition could be attributed to the formation of superoxide species on the MgO surface.
机译:本作者侧重于开发用于纳米级MgO的可重复和成本效益的尺寸控制的合成途径和作为晶体尺寸的函数的杀菌能力的初步评估。通过在水相中合成的Mg碳酸水合物前体(氢化物)的热分解产生纳米级MgO。通过X射线衍射和HRTEM分析证明了MgO相的独生形成,平均微晶尺寸为7-13±1nm。傅里叶变换 - 红外光谱证实前体的演变为所需的MgO结构。通过在特定尺寸的MgO纳米颗粒存在下测量600nm大肠杆菌的光学密度来进行杀菌试验。平均微晶尺寸为13nm的MgO纳米晶体抑制细菌生长至500mg MgO / L的35%。抑制机制可归因于在MgO表面上形成超氧化物物种。

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