Comparison of the Intensities of Chemical and Physical Processes Occurring during Laser-Induced Breakdown of Colloidal Solutions of Tb Nanoparticles with Different Oxidation States

IF 0.6 4区 物理与天体物理 Q4 MECHANICS
A. V. Simakin, I. V. Baymler, V. V. Smirnova, M. E. Astashev, V. V. Voronov,  A. S. Dorokhov, S. V. Gudkov
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引用次数: 1

Abstract

A technique for synthesizing Tb nanoparticles using laser ablation in various liquid media (MQ water, ethanol, isopropyl alcohol, and isobutanol) is considered with the aim of preparing colloidal solutions of Tb nanoparticles, containing different amounts of oxidized particles. The synthesis of nanoparticles in isobutyl alcohol exhibits the lowest percentage of oxidized particles relative to the total number of particles in the resulting colloid, with a final ratio of oxidized Tb2O3 particles to all particles close to 5%. The influence of oxidized particles on the intensity of physicochemical processes (formation of plasma, shock waves, acoustic signals, and chemical products as a result of dissociation of water molecules) occurring during optical breakdown of colloidal solutions, has been investigated. The general tendency of the influence of oxidized particles consists in an increase in the intensity of the aforementioned characteristics upon laser breakdown with an increase in the Tb2O3 fraction with respect to the total number of particles in the colloid. The observed effect is presumably related to the high aggregability of Tb2O3 particles, while the absorption coefficient of particles is of minor importance.

Abstract Image

不同氧化态Tb纳米粒子胶体溶液激光击穿过程中化学和物理过程强度的比较
研究了一种在不同液体介质(MQ水、乙醇、异丙醇和异丁醇)中使用激光烧蚀合成纳米结核颗粒的技术,目的是制备含有不同数量氧化颗粒的纳米结核胶体溶液。在异丁醇中合成的纳米颗粒显示出相对于所得到的胶体中颗粒总数的氧化颗粒百分比最低,最终氧化Tb2O3颗粒占所有颗粒的比例接近5%。氧化颗粒对胶体溶液光学分解过程中发生的物理化学过程(等离子体、冲击波、声信号和水分子解离的化学产物的形成)强度的影响已经进行了研究。氧化颗粒影响的总体趋势在于激光击穿后上述特征的强度随着Tb2O3分数相对于胶体中颗粒总数的增加而增加。观察到的效果可能与Tb2O3颗粒的高聚集性有关,而颗粒的吸收系数则不太重要。
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来源期刊
Doklady Physics
Doklady Physics 物理-力学
CiteScore
1.40
自引率
12.50%
发文量
12
审稿时长
4-8 weeks
期刊介绍: Doklady Physics is a journal that publishes new research in physics of great significance. Initially the journal was a forum of the Russian Academy of Science and published only best contributions from Russia in the form of short articles. Now the journal welcomes submissions from any country in the English or Russian language. Every manuscript must be recommended by Russian or foreign members of the Russian Academy of Sciences.
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