Center for Advanced Materials, Qatar University , P.O. Box 2713, Doha, Qatar.
Department of Glycobiotechnology, Institute of Chemistry, Slovak Academy of Sciences , Dubravská cesta 9, 842 36 Bratislava, Slovak Republic.
Langmuir. 2016 Jun 7;32(22):5491-9. doi: 10.1021/acs.langmuir.6b01084. Epub 2016 May 26.
A simple fabrication method for preparation of surfaces able to switch from superhydrophobic to superhydrophilic state in a reversible and fast way is described. A self-assembled monolayer (SAM) consisting of quaternary ammonium group with aliphatic tail bearing terminal thiol functionality was created on gold nano/microstructured and gold planar surfaces, respectively. A rough nano/microstructured surface was prepared by galvanic reaction on a silicon wafer. The reversible counterion exchange on the rough surface resulted in a switchable contact angle between <5° and 151°. The prewetted rough surface with Cl(-) as a counterion possesses a superoleophobic underwater character. The kinetics of counterion exchanges suggests a long hydration process and strong electron ion pairing between quaternary ammonium group and perfluorooctanoate counterion. Moreover, a wettability gradient from superhydrophobic to superhydrophilic can be formed on the modified rough gold surface in a robust and simple way by passive incubation of the substrate in a counterion solution and controlled by ionic strength. Furthermore, adsorption of gold nanoparticles to modified plain gold surface can be controlled to a high extent by counterions present on the SAM layer.
描述了一种简单的制备方法,可将表面制备成能够以可逆和快速的方式从超疏水状态切换到超亲水状态的表面。分别在金纳米/微结构化表面和金平面表面上形成了具有末端硫醇官能团的季铵基团的自组装单层(SAM)。通过在硅片上进行电化反应制备了粗糙的纳米/微结构化表面。在粗糙表面上的可逆抗衡离子交换导致接触角在<5°和 151°之间发生变化。预先润湿的带有 Cl(-)作为抗衡离子的粗糙表面具有超疏油性水下特性。抗衡离子交换的动力学表明,在全氟辛酸盐抗衡离子和季铵基团之间存在长的水合过程和强的电子离子配对。此外,通过将基底被动地孵育在抗衡离子溶液中并通过离子强度进行控制,可以在改性的粗糙金表面上以稳健且简单的方式形成从超疏水到超亲水的润湿性梯度。此外,通过 SAM 层上存在的抗衡离子,可以在很大程度上控制金纳米粒子在改性的平面金表面上的吸附。