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Combined effect of cetyltrimethylammonium bromide and laponite platelets on colloidal stability of carbon nanotubes in aqueous suspensions

机译:十六烷基甲基溴化铵血液和氯硝血小板对含水悬浮液中碳纳米管胶体稳定性的综合作用

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The combined effect of cationic surfactant (cetyltrimethylammonium bromide, CTAB) and laponite platelets (laponite RD) on the stability of aqueous suspension of carbon nanotubes (NTs) has been investigated. The experimental methods include measurements of electrokinetic potential, radius of particles and aggregation stability. In individual suspensions the concentration of NTs was C-n = 0.003% and concentration of laponite was C-l = 0.5% and 2%. In hybrid NT + laponite suspensions the concentration of NTs was C-n = 0.003% and 0.01% and the laponite/NT mass ratio, X = m(l)/m(n), was varied within the range of X = 0-1. For individual NTs and laponite species the increase of the CTAB concentration, C-s, changed the electrokinetic potential from negative to positive. However, the different effects of CTAB on stability of this species were observed: addition of CTAB stabilized the individual NTs and enhanced aggregation of laponite. The CFAB-induced overcharging was also typical for hybrid NT + laponite suspensions. Surprisingly, the minimum of a position of an isoelectric point C-S(IEP) (approximate to 3.10(-6)M) at X approximate to 0.1-0.3 was observed. This behavior can reflect the impact of CTAB on adhesion interactions between NTs and laponite platelets and adsorption of CTAB on individual NT and laponite species and their hybrids. (C) 2017 Elsevier B.V. All rights reserved.
机译:研究了阳离子表面活性剂(甲烷基甲基溴化铵,CTAB)和Laponite血小板(Laponite Rd)对碳纳米管(NTS)含水悬浮液稳定性的综合作用。实验方法包括测量电动电位,粒子半径和聚集稳定性。在个体悬浮液中,NTS的浓度为C-N = 0.003%,氯硝酸盐浓度为C-L = 0.5%和2%。在杂交NT +丙酮悬浮液中,NTS的浓度为C-N = 0.003%和0.01%,并且Laponite / Nt质量比X = M(L)/ m(n)在X = 0-1的范围内变化。对于单独的NTS和Laponite物种,CTAB浓度的增加,C-S,从负面变为阳性的电动电位。然而,观察到CTAB对该物种稳定性的不同效果:加入CTAB稳定单独的NTS并增强Laponite的聚集。 CFAB诱导的过充电也典型用于杂交NT + Laponite悬浮液。令人惊讶的是,观察到等电点C-S(IEP)(IEP)的最小位置(近似为3.10(-6)m)近似约为0.1-0.3。这种行为可以反映CTAB对NTS和Laponite血小板之间的粘附相互作用以及CTAB对单个NT和丙酮物种及其杂种的吸附。 (c)2017年Elsevier B.V.保留所有权利。

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