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首页> 外文期刊>Journal of Colloid and Interface Science >AFM forces between mica and polystyrene surfaces in aqueous electrolyte solutions with and without gas bubbles
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AFM forces between mica and polystyrene surfaces in aqueous electrolyte solutions with and without gas bubbles

机译:含或不含气泡的电解质水溶液中云母和聚苯乙烯表面之间的AFM力

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Force curves between a flat mica substrate and a polystyrene microsphere were measured with an atomic force microscope (AFM) in carefully degassed water and aqueous NaCl, CaCl_2, and AlCl_3 solutions. The pH of the water used does not change significantly with degassing treatment, and its value remains close to 6. Electrolyte concentration ranges from 10-4 to 10-2M and pH from 4.7 to 5.1. We have found that the repulsive long-range electrostatic force between mica and polystyrene is attenuated by the presence of electrolytes and counterbalanced by a long-range attractive force, which we referred to as a hydrophobic force, which is longer-ranged than the ever present attractive van der Waals force. This force, which includes the adhesive bridging of residual air bubbles and newborn vapor cavities, and any other unknown forces, is reasonably well represented by a unique exponential law. Prefactor and decaying length are not very sensitive to electrolyte type, concentration, and pH, suggesting that any new force included in the law, in addition to adhesive bridges, should obey a non-classical electrostatic mechanism. However, we also know that liquid/solid contact angle and liquid/vapor surface tension increase with electrolyte concentration and valence increasing the stability of bubbles and cavities which in turn increase the bridging force. Clearly, these effects are hidden in the empirical force law.
机译:用原子力显微镜(AFM)在经过仔细脱气的水和NaCl,CaCl_2和AlCl_3水溶液中测量了云母基底和聚苯乙烯微球之间的力曲线。脱气处理后使用的水的pH值没有显着变化,并且其值保持在接近6的水平。电解质的浓度范围为10-4至10-2M,pH值为4.7至5.1。我们发现,由于存在电解质,云母和聚苯乙烯之间的排斥性远距离静电力会减弱,而被称为“疏水力”的远距离吸引力会抵消这种静电力,该吸引力比以往任何时候都更长范德华力。这种力,包括残余气泡和新生蒸汽腔的粘合剂桥接以及任何其他未知力,都可以通过唯一的指数定律很好地表示出来。预因子和衰减长度对电解质的类型,浓度和pH值不是很敏感,这表明除粘合桥外,该法则中包括的任何新力都应遵循非经典的静电机制。但是,我们也知道,随着电解质浓度的增加,液/固接触角和液/蒸气表面张力随电解质浓度和化合价的增加而增加,气泡和空腔的稳定性反过来又增加了桥连力。显然,这些效应隐藏在经验力定律中。

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