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New Proposal for Size and Size-Distribution Evaluation of Nanoparticles Synthesized via Ultrasonic Spray Pyrolysis Using Search Algorithm Based on Image-Processing Technique

机译:基于图像处理技术的搜索算法对超声喷雾热解法合成纳米颗粒尺寸和尺寸分布的新建议

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摘要

Nanoparticle properties are correlated to their size, size distribution, and shape; it is essential to accurately measure these features in the field of nanoscience. In this study, silver nanoparticles (AgNPs) were synthesized with the ultrasonic-spray-pyrolysis (USP) method from a water solution of silver nitrate. The synthesized AgNPs were characterized by Dynamic Light Scattering (DLS) analysis and Scanning Electron Microscopy (SEM) to reveal their size and size distribution. A search algorithm based on an image-processing technique to obtain particle size and particle-size distribution from SEM micrographs is proposed. In order to obtain more quantitative information and data with respect to the morphology of particles synthesized under different process parameters, SEM micrographs with a nonhomogeneous background contrast were examined via image-processing techniques in MATLAB. Due to the inhomogeneous contrast of SEM micrographs, defining an overall threshold value was insufficient in the detection of whole nanoparticles. Thus, subimages were directly created according to the maximum and minimum particle size specified by the user to determine local threshold values. The obtained results were automatically combined to represent both particle dimension and location in the SEM micrographs. We confirmed that the results of our DLS analysis, theoretical calculation, and image-processing technique were correlated with our expected results.
机译:纳米粒子的性质与其大小,大小分布和形状相关。在纳米科学领域,准确测量这些特征至关重要。在这项研究中,银纳米颗粒(AgNPs)是通过超声喷雾热解(USP)方法从硝酸银的水溶液中合成的。通过动态光散射(DLS)分析和扫描电子显微镜(SEM)对合成的AgNPs进行表征,以揭示其尺寸和尺寸分布。提出了一种基于图像处理技术的搜索算法,以从SEM显微照片中获得粒径和粒径分布。为了获得有关在不同工艺参数下合成的颗粒形态的更多定量信息和数据,通过MATLAB中的图像处理技术检查了具有非均匀背景对比度的SEM显微照片。由于SEM显微照片的不均匀对比,在检测整个纳米颗粒时,定义整体阈值是不够的。因此,根据用户指定的最大和最小粒度直接创建子图像,以确定局部阈值。将获得的结果自动合并以在SEM显微照片中表示颗粒尺寸和位置。我们确认,我们的DLS分析,理论计算和图像处理技术的结果与我们的预期结果相关。

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