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Structural Organization of Magnetic Fluids Stabilized with Fatty Acids

机译:脂肪酸稳定的磁性流体的结构组织

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Magnetic colloids which exist in a nonflowing pasty form at room temperature and are transformed into a liquid state during heating are described for the first time. Magnetic fluids (MFs) are obtained in a hydrocarbon medium after introduction of a nanosize magnetite into kerosene in the presence of stabilizers. Fatty acids with different lengths of a hydrocarbon fragment, from C~(12)to C~(22), were used as stabilizers. Magnetic granulometry data showed that the average diameter of particles is 8.3 nm. The MF samples are studied by differential scanning calorimetry. The geometric parameters of adsorption layers are calculated taking into account the geometric parameters of nanoparticles and stabilizer molecules. The models of liquid and solid states of the adsorption and overlapping layers of two particles are constructed from calorimetric measurements, calculation data, and observations of the phase state of MFs. The experimental and theoretical data prove that transition of the adsorption layer from the liquid phase to the solid one for particles ~8 nm in size is possible if the length of the hydrocarbon moiety in the stabilizer is C~(14)and higher. The length of the stabilizer molecule and its melting point are the main parameters which determine the structure and properties of MFs. Moreover, when the length of the hydrocarbon fragment in the stabilizer is C~(12)and higher, magnetic and van der Waals interactions between solid particles may be neglected.
机译:首次描述了在室温下以不流动的糊状形式存在并在加热过程中转变为液态的磁性胶体。在稳定剂存在下,将纳米级磁铁矿引入煤油后,在烃类介质中获得磁流体(MFs)。具有从C〜(12)到C〜(22)的不同碳氢化合物片段长度的脂肪酸被用作稳定剂。磁粒度数据表明,颗粒的平均直径为8.3nm。通过差示扫描量热法研究MF样品。考虑到纳米颗粒和稳定剂分子的几何参数,计算吸附层的几何参数。从量热测量,计算数据和对MFs相态的观察中构建了两个粒子的吸附层和重叠层的液态和固态模型。实验和理论数据证明,如果稳定剂中烃部分的长度为C〜(14)或更高,则吸附层可以从液相过渡到固态,粒径约为8nm。稳定剂分子的长度及其熔点是决定MFs结构和性能的主要参数。此外,当稳定剂中烃片段的长度为C〜(12)或更高时,固体颗粒之间的磁性和范德华相互作用可能被忽略。

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