Zhang Jinhong, Yoon Roe-Hoan, Mao Min, Ducker William A
Department of Mining and Minerals Engineering, Virginia Tech, Blacksburg, Virginia 24060, USA.
Langmuir. 2005 Jun 21;21(13):5831-41. doi: 10.1021/la047398n.
Sakamoto et al. (Langmuir 2002, 18, 5713) conducted AFM force measurements between silica sphere and fused-silica plate in aqueous octadecyltrimethylammonium chloride (C18TACl) solutions and concluded that long-range attractive force is not observed in carefully degassed solutions. In the present work, AFM force measurements were conducted by following the procedures described by Sakamoto et al. The results showed the presence of an attractive force that was much stronger than the van der Waals force both in air-saturated and degassed solutions. The force was most attractive at 5 x 10(-6) M C18TACl, where contact angle was maximum. At this concentration, which is close to the charge compensation point (ccp) of the glass sphere, the long-range decay lengths (D) were 34 and 38 nm in air-saturated and degassed solutions, respectively. At 10(-5) M, the decay length decreased from 30 to 4 nm upon degassing. This decrease in decay length can be explained by a pH increase (from 5.7 to 6.6), which in turn causes additional surfactant molecules to adsorb on the surface with inverse orientation. The attractive force was screened by an added electrolyte (NaCl), indicating that the attractive force may be of electrostatic origin. Therefore, the very long decay lengths observed in the absence of electrolyte may be ascribed to the fact that the ccp occurs at a very low surfactant concentration.
坂本等人(《朗缪尔》2002年,第18卷,5713页)在十八烷基三甲基氯化铵(C18TACl)水溶液中对二氧化硅球体和熔融石英板之间进行了原子力显微镜(AFM)力测量,并得出结论:在经过仔细脱气的溶液中未观察到长程吸引力。在本研究中,按照坂本等人所述的程序进行了AFM力测量。结果表明,在空气饱和溶液和脱气溶液中均存在一种比范德华力强得多的吸引力。在5×10⁻⁶ M C18TACl时,该力的吸引力最强,此时接触角最大。在这个接近玻璃球体电荷补偿点(ccp)的浓度下,在空气饱和溶液和脱气溶液中的长程衰减长度(D)分别为34和38纳米。在10⁻⁵ M时,脱气后衰减长度从30纳米降至4纳米。衰减长度的这种减小可以用pH值升高(从5.7升至6.6)来解释,这反过来又导致额外的表面活性剂分子以相反的方向吸附在表面上。添加电解质(NaCl)会屏蔽吸引力,这表明吸引力可能源于静电。因此,在不存在电解质的情况下观察到的非常长的衰减长度可能归因于电荷补偿点发生在非常低的表面活性剂浓度这一事实。