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Spectral Absorption of Unpolarized Light Through Nano-Materials in the Absence of a Magnetic Field

机译:在没有磁场的情况下通过纳米材料对非偏振光的光谱吸收

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摘要

A study of optical properties, such as light absorption, of a colloidal nano-material, provides information on the biphasic, solid - liquid system microstructure. The nano-material under study is a magnetic liquid (ferrofluid). The disperser agent is petroleum mineral oil and the dispersed material is a brown spar powder (nano-particles). The stabilizer is oleic acid. Light absorption through ferrofluid samples reveals the tendency of solid particles in a colloidal solution to form aggregates. The paper emphasizes the linear dependence between the spectral absorption coefficient, concentration and wavelength. The aggregates cause deviations of the extinction coefficient from values according to the Bouger-Lambert-Beer law. Fe_3O_4 aggregates sized 58.76 nm are formed in the system. The average number of nano-particles forming aggregates is 6. The magnetic liquid to be studied is secure stable and, thus, trustful in technological and biological applications.
机译:对胶体纳米材料的光学性质(例如光吸收)的研究提供了有关双相固液系统微观结构的信息。研究中的纳米材料是磁性液体(铁磁流体)。分散剂是石油矿物油,分散的材料是棕晶石粉(纳米颗粒)。稳定剂是油酸。通过铁磁流体样品的光吸收揭示了胶体溶液中固体颗粒形成聚集体的趋势。本文强调了光谱吸收系数,浓度和波长之间的线性关系。聚集体导致消光系数与根据Bouger-Lambert-Beer定律的值产生偏差。在系统中形成了尺寸为58.76 nm的Fe_3O_4聚集体。形成聚集体的纳米粒子的平均数量为6。要研究的磁性液体是安全稳定的,因此在技术和生物应用中值得信赖。

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