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首页> 外文期刊>Journal of Colloid and Interface Science >Adsorption of cetyltrimethylammonium bromide and cetyldimethylbenzylammonium chloride on a hanging mercury electrode studied by adsorptive transfer stripping voltammetry
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Adsorption of cetyltrimethylammonium bromide and cetyldimethylbenzylammonium chloride on a hanging mercury electrode studied by adsorptive transfer stripping voltammetry

机译:吸附转移溶出伏安法研究十六烷基三甲基溴化铵和十六烷基二甲基苄基氯化铵在悬挂汞电极上的吸附

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摘要

The adsorption of cetyltrimethylammonium bromide (CTAB) and cetyldimethylbenzylammonium chloride (CDBACl) on a hanging mercury electrode is studied using adsorptive transfer stripping voltammetry. The surfactants are adsorbed on mercury and are then transferred in KBr or KCl under various conditions, including temperatures from 1 to 40. °C, open or closed circuits with different initial potentials, and repeated scans, etc. The results are compared with previously published results on the adsorption of CTAB or CDBACl on mercury, where condensed films were formed and are quite different than those obtained by adsorptive stripping voltammetry. In this case, an absence of condensed film is observed for CTAB. A condensed film with low capacitance value is formed in the case of CDBACl after transfer at low temperatures, or after repeated scans, resulting in reorientation of the molecules to more compact states. Capacity time curves at the potentials where the film is formed show in a few cases a nucleation and growth mechanism, with induction time and studied by the Avrami formulation, while an observed increase of the capacitance with time is attributed to the formation of hemimicelles. The results also indicate the importance of interactions between the hydrophobic chains.
机译:利用吸附转移溶出伏安法研究了十六烷基三甲基溴化铵(CTAB)和十六烷基二甲基苄基氯化铵(CDBACl)在汞电极上的吸附。表面活性剂吸附在汞上,然后在各种条件下转移到KBr或KCl中,包括1至40°C的温度,具有不同初始电势的开路或闭路以及重复扫描等。将结果与以前发表的进行比较CTAB或CDBACl在汞上的吸附结果,在该汞上形成了凝结膜,与通过吸附溶出伏安法获得的凝结膜完全不同。在这种情况下,观察到CTAB没有凝结膜。在CDBACl的情况下,在低温下转移后或重复扫描后,会形成电容值低的冷凝膜,从而使分子重新取向为更紧密的状态。在少数情况下,形成膜的电势下的电容时间曲线显示出成核和生长机理,具有感应时间,并通过Avrami配方进行了研究,而观察到的电容随时间的增加归因于半胶束的形成。结果还表明疏水链之间相互作用的重要性。

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