Size and shape analysis of silica (SiO2) and gold (Au) nanoparticles

D. Bilgili, Mayssam Naji, E. Erdem
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Abstract

Abstract In nanotechnology, the size and shape control of nanoparticles is crucial as their properties are highly dependent on their morphology. This obliges researchers to work on obtaining uniform size and shape distribution in synthesized particles so that their electrical, optical, and magnetic properties remain uniform within the same batch. This brings the problem of how to quantify the shape and size of nanoparticles in the most accurate way. The most common way to determine size distribution is using UV-vis spectrometry; however, this method disregards the existence of agglomerated particles and may sometimes give an incorrect measurement. Therefore a technique that can obtain this data directly from the transmission electron microscopy (TEM) images of particles would be more reliable as it would capture data for every single particle in the batch. In a classical statistical sense, our interest is the shape and size distribution of nanoparticles. In this paper, we quantify the size and shape of nanoparticles using the statistical techniques applied on TEM images of particles: Functional Data and Shape Analysis. By using this shape theory we obtain the geodesic distances not only between the particles but also among the frames. We further cluster the nanoparticles in terms of their similarities. We want to emphasize the importance of the deformation and how it is done of one nanoparticle onto another.
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二氧化硅(SiO2)和金(Au)纳米颗粒的尺寸和形状分析
摘要在纳米技术中,纳米颗粒的大小和形状的控制是至关重要的,因为它们的性质高度依赖于它们的形态。这就要求研究人员努力在合成粒子中获得均匀的大小和形状分布,从而使它们的电学、光学和磁性能在同一批次中保持均匀。这就带来了如何以最精确的方式量化纳米颗粒的形状和大小的问题。确定尺寸分布最常用的方法是使用紫外-可见光谱法;然而,这种方法忽略了聚集粒子的存在,有时可能会给出不正确的测量结果。因此,可以直接从粒子的透射电子显微镜(TEM)图像中获得这些数据的技术将更加可靠,因为它可以捕获批次中每个单个粒子的数据。在经典统计学意义上,我们的兴趣是纳米粒子的形状和大小分布。在本文中,我们使用应用于粒子TEM图像的统计技术:功能数据和形状分析来量化纳米粒子的大小和形状。利用这一形状理论,我们不仅得到了粒子之间的测地线距离,而且得到了坐标系之间的测地线距离。我们根据纳米颗粒的相似性进一步聚类。我们想强调变形的重要性,以及如何将一个纳米粒子转移到另一个纳米粒子上。
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