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Characterization of the electric double layers of multi-walled carbon nanotubes, laponite and nanotube + laponite hybrids in aqueous suspensions

机译:多壁碳纳米管,Laponite和Nanotube + Laponite杂交物中的电双层的表征

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摘要

To characterize the electric double layers (EDLs) of multi-walled carbon nanotubes (NTs), laponite clay disks and NT + laponite hybrid particles, their electrophoretic mobility was investigated as a function of pH and concentration of electrolytes (KCl, CaCl_2 and AlCl_3). The electrokinetic behaviour of NTs resembles that of the lyophobic colloids. An increase in pH from 2 to 12 resulted in substantial increase of the absolute (negative) values of the electrophoretic mobility of NTs due to dissociation of surface hydroxyl and carbonyl groups, which was identified by infra-red (IR) spectroscopy. The observed attraction between similarly charged colloidal particles of NTs and laponite was explained by the highly heterogeneous distribution of negatively charged functional groups on the surface of NTs and difference in electrophoretic mobility of NT and laponite particles.
机译:为了表征多壁碳纳米管(NTS)的电双层(EDL),Laponite粘土磁盘和NT +丙酮杂交颗粒,作为电解质的pH和浓度的函数研究了它们的电泳迁移率(KCl,CaCl_2和AlCl_3) 。 NTS的电动行为类似于冻干胶体。 pH从2〜12的增加导致NTS由于表面羟基和羰基的解离而基本增加的NTS电泳迁移率的绝对(阴性)值,其通过红外(IR)光谱鉴定。 通过高度异质的官能团对NT和乙酰岩颗粒的电泳迁移率的高度异质分布,解释了NTS和Laponite的类似带电胶体颗粒之间的相似带电胶体颗粒之间的观察到的吸引力。

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