McColl James, Yakubov Gleb E, Ramsden Jeremy J
Department of Materials, Cranfield University, U.K.
Langmuir. 2007 Jun 19;23(13):7096-100. doi: 10.1021/la0630918. Epub 2007 May 16.
Complex solutes may adsorb from solution onto solid surfaces in a concentration-dependent manner. In other words, the adsorption behavior is qualitatively different in different bulk concentration regimes. Here we show that the large glycoprotein mucin not only adsorbs in distinctively different ways according to the bulk concentration but also, strikingly, that the law of desorption, established with the help of high-resolution molecular microscopy, depends on the bulk concentration during adsorption. Making use of supporting bulk rheology data delineating the entangled regime and atomic force microscopy images of the adsorbed layers corroborating the existence of a bilayer structure formed at higher bulk concentrations, a tentative molecular mechanism for the observations is proposed.
复杂溶质可能会以浓度依赖的方式从溶液中吸附到固体表面。换句话说,在不同的本体浓度范围内,吸附行为在性质上是不同的。在这里,我们表明,大糖蛋白粘蛋白不仅根据本体浓度以明显不同的方式吸附,而且引人注目的是,借助高分辨率分子显微镜建立的解吸规律取决于吸附过程中的本体浓度。利用描述缠结状态的本体流变学数据以及证实较高本体浓度下形成双层结构的吸附层的原子力显微镜图像,提出了这些观察结果的初步分子机制。