Laboratory for Characterization and Processing of Polymers, Faculty of Mechanical Engineering, University of Maribor, Smetanova 17, SI-2000 Maribor, Slovenia.
Carbohydr Polym. 2013 Feb 15;92(2):1046-53. doi: 10.1016/j.carbpol.2012.10.026. Epub 2012 Oct 17.
The adsorption behavior of cellulose-4-[N-methylammonium]butyrate chloride (CMABC) on two hydrophilic substrates is studied, namely nanometric cellulose model thin films and silicon dioxide substrates. The adsorption is quantified in dependence of electrolyte concentration and pH value using a quartz crystal microbalance with dissipation (QCM-D). In case of CMABC, at high ionic strengths (25-100 mM NaCl) high adsorption is observed at pH 7 (Δf(3): -15 to -17 Hz) while at lower ionic strengths (1-10 mM) less CMABC (Δf(3): -2 to -12 Hz) is deposited on the cellulose surfaces as indicated by the frequency changes using QCM-D. A change in pH value from 7 to 8 reveals an increase in adsorption. Atomic force microscopy shows that the coating of cellulose thin films with CMABC changes the morphology from a fibrillar to a particle like structure on the surface. The surface wettability with water increases with an increasing amount of CMABC on the surface compared to neat cellulose model films. At lower pH values (3 and 5), CMABC does not adsorb onto the cellulose model thin films. XPS is used to validate the results and to determine the nitrogen content of the surfaces. In addition, adsorption of CMABC onto another hydrophilic and negatively charged substrate, silicon dioxide coated quartz crystals, cannot be detected at different pH values and electrolyte concentrations as proven by QCM-D.
研究了纤维素-4-[N-甲基铵]丁酸酯氯化物(CMABC)在两种亲水基底上的吸附行为,即纳米纤维素模型薄膜和二氧化硅基底。使用石英晶体微天平(QCM-D)在依赖于电解质浓度和 pH 值的情况下定量吸附。对于 CMABC,在高离子强度(25-100 mM NaCl)下,在 pH 7 时观察到高吸附(Δf(3):-15 至-17 Hz),而在较低离子强度(1-10 mM)下,在纤维素表面上沉积的 CMABC 较少(Δf(3):-2 至-12 Hz),如 QCM-D 测量的频率变化所指示。pH 值从 7 变为 8 表明吸附增加。原子力显微镜显示,CMABC 涂覆纤维素薄膜会使表面的形态从纤维状变为颗粒状。与纯纤维素模型薄膜相比,表面的润湿性随表面上 CMABC 含量的增加而增加。在较低的 pH 值(3 和 5)下,CMABC 不会吸附在纤维素模型薄膜上。XPS 用于验证结果并确定表面的氮含量。此外,如 QCM-D 所证明的,CMABC 在不同的 pH 值和电解质浓度下不能吸附到另一种亲水和带负电荷的基底,即涂有二氧化硅的石英晶体。