Prediction of Particle Number Density in Suspension by Measuring the Sizes of Bubbles Generated During Microwave Irradiation

IF 1.5 4区 材料科学 Q3 CRYSTALLOGRAPHY
Y. Asakuma, A. Shibatani, Haruka Kan, A. Saptoro
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引用次数: 1

Abstract

Past studies report that nucleation promotion is induced by quick heating of microwave in nanoparticle synthesis. However, how the nucleation promotion quantitatively affects particle number density is still unclear. In this study, the number density is predicted using bubble size profiles measured under microwave irradiation. This idea is based on a finding that the maximum bubble size during the irradiation is closely related to the particle number density due to homogeneous distribution of microwave absorbance energy to the particles. The results indicate that when solute concentration or anti‐solvent concentration is higher, the particle number density also increases due to the nucleation promotion caused by microwave quick heating. This new approach can be expected as an innovative and rapid method for quantitative estimation of particle number density in microwave‐assisted nanoparticle manufacture.
通过测量微波辐照过程中产生的气泡大小来预测悬浮液中的颗粒数密度
以往的研究报道,在纳米颗粒合成中,微波的快速加热诱导成核。然而,成核促进如何定量地影响粒子数密度仍不清楚。在本研究中,使用微波辐射下测量的气泡尺寸曲线来预测数字密度。这一想法是基于一项发现,即由于微波吸收能量在粒子上的均匀分布,辐照时的最大气泡尺寸与粒子数密度密切相关。结果表明,当溶质浓度或反溶剂浓度较高时,由于微波快速加热引起的成核促进,颗粒数密度也增加。这种新方法有望成为微波辅助纳米颗粒制造中粒子数密度定量估计的一种创新和快速方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
6.70%
发文量
121
审稿时长
1.9 months
期刊介绍: The journal Crystal Research and Technology is a pure online Journal (since 2012). Crystal Research and Technology is an international journal examining all aspects of research within experimental, industrial, and theoretical crystallography. The journal covers the relevant aspects of -crystal growth techniques and phenomena (including bulk growth, thin films) -modern crystalline materials (e.g. smart materials, nanocrystals, quasicrystals, liquid crystals) -industrial crystallisation -application of crystals in materials science, electronics, data storage, and optics -experimental, simulation and theoretical studies of the structural properties of crystals -crystallographic computing
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