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首页> 外文期刊>Nanoscience and Nanotechnology Letters >Effects of Ethanol and Three-Phase Contact Angle on Gold Nanoparticle Adsorption at Water/Toluene Interface
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Effects of Ethanol and Three-Phase Contact Angle on Gold Nanoparticle Adsorption at Water/Toluene Interface

机译:乙醇和三相接触角对金/纳米粒子在水/甲苯界面吸附的影响

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摘要

This work investigates the effects of ethanol and the 3-phase (charged Au surface, water/ethanol solution and toluene phase) contact angle on the formation of gold nanoparticle monolayer at water/toluene interface. Although thermodynamic calculation indicates that nanoparticles can be spontaneously adsorbed to the water/oil or water/air interface even without ethanol addition, a large sorption barrier was proposed to hinder the nanoparticle adsorption for the water/air interface. By replacing the air phase with an oil phase (toluene), the sorption barrier was proposed to be reduced to a large extent due to the enhancement in attractive hydrophobic interaction. Besides, ethanol addition was proposed to enhance the nanoparticle adsorption by reducing the repulsive electrostatic interaction. Meanwhile, it was found that the 3-phase contact angle can be adjusted to approach 90° by modulating the ethanol dosage. The effect of ethanol dosage has also been investigated based on the morphology of the monolayer film.
机译:这项工作研究了乙醇和三相(带电的金表面,水/乙醇溶液和甲苯相)的接触角对水/甲苯界面处金纳米粒子单层形成的影响。尽管热力学计算表明即使不添加乙醇,纳米颗粒也可以自发地吸附在水/油或水/空气界面上,但提出了较大的吸附屏障,阻碍了纳米颗粒在水/空气界面上的吸附。通过用油相(甲苯)代替空气相,由于增强了有吸引力的疏水相互作用,因此建议将吸附屏障大大降低。此外,提出了添加乙醇以通过减少排斥性静电相互作用来增强纳米颗粒的吸附。同时,发现可以通过调节乙醇剂量将三相接触角调节至接近90°。还基于单层膜的形态研究了乙醇用量的影响。

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