Behavior of C70 Fullerene in a Binary Mixture of Xylene and Tetrahydrofuran

IF 1.2 4区 化学 Q4 CHEMISTRY, PHYSICAL
U. Makhmanov, S. Esanov, D. Sidigaliyev, K. Musurmonov, Bobirjon A. Aslonov, Tohirjon A. Chuliev
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Abstract

The self-organization properties of C70 fullerene molecules in a xylene/tetrahydrofuran binary mixture were studied for the first time by optical absorption, refractometry, and dynamic light scattering. A correlation has been established between the change in the refractive index of the C70/xylene/tetrahydrofuran solution and the degree of self-organization of C70 molecules in the medium at various concentrations and storage periods of the solution. It is shown that the features of the optical absorption spectrum of C70/xylene/tetrahydrofuran at a fixed low concentration of fullerene are sensitive to its storage time. It was determined that the beginning time of the formation of C70 nanoclusters and their final size depend on the degree of concentration of fullerene and the time spent keeping the solution. The observed nature of the C70 fullerene solution in a binary mixture may help to elucidate its mechanism of self-organization in the future.
C70富勒烯在二甲苯和四氢呋喃二元混合物中的行为
采用光学吸收、折射和动态光散射等方法,首次研究了二甲苯/四氢呋喃二元混合物中C70富勒烯分子的自组织性质。建立了C70/二甲苯/四氢呋喃溶液的折射率变化与C70分子在介质中不同浓度和不同贮存期的自组织程度之间的相关性。结果表明,C70/二甲苯/四氢呋喃在固定低浓度富勒烯下的光吸收光谱特征对其贮存时间敏感。结果表明,C70纳米团簇形成的起始时间和最终尺寸取决于富勒烯的浓度和保持溶液的时间。观察到的C70富勒烯溶液在二元混合物中的性质可能有助于阐明其自组织机制。
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来源期刊
Physics and Chemistry of Liquids
Physics and Chemistry of Liquids 化学-物理:凝聚态物理
CiteScore
3.30
自引率
8.30%
发文量
43
审稿时长
6-12 weeks
期刊介绍: Physics and Chemistry of Liquids publishes experimental and theoretical papers, letters and reviews aimed at furthering the understanding of the liquid state. The coverage embraces the whole spectrum of liquids, from simple monatomic liquids and their mixtures, through charged liquids (e.g. ionic melts, liquid metals and their alloys, ions in aqueous solution, and metal-electrolyte systems) to molecular liquids of all kinds. It also covers quantum fluids and superfluids, such as Fermi and non-Fermi liquids, superconductors, Bose-Einstein condensates, correlated electron or spin assemblies. By publishing papers on physical aspects of the liquid state as well as those with a mainly chemical focus, Physics and Chemistry of Liquids provides a medium for the publication of interdisciplinary papers on liquids serving its broad international readership of physicists and chemists.
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