Hanaor Dorian A H, Ghadiri Maliheh, Chrzanowski Wojciech, Gan Yixiang
School of Civil Engineering and ‡Faculty of Pharmacy, University of Sydney , Sydney, NSW 2006, Australia.
Langmuir. 2014 Dec 23;30(50):15143-52. doi: 10.1021/la503581e. Epub 2014 Dec 11.
By means of the in situ electrokinetic assessment of aqueous particles in conjunction with the addition of anionic adsorbates, we develop and examine a new approach to the scalable characterization of the specific accessible surface area of particles in water. For alumina powders of differing morphology in mildly acidic aqueous suspensions, the effective surface charge was modified by carboxylate anion adsorption through the incremental addition of oxalic and citric acids. The observed zeta potential variation as a function of the proportional reagent additive was found to exhibit inverse hyperbolic sine-type behavior predicted to arise from monolayer adsorption following the Grahame-Langmuir model. Through parameter optimization by inverse problem solving, the zeta potential shift with relative adsorbate addition revealed a nearly linear correlation of a defined surface-area-dependent parameter with the conventionally measured surface area values of the powders, demonstrating that the proposed analytical framework is applicable for the in situ surface area characterization of aqueous particulate matter. The investigated methods have advantages over some conventional surface analysis techniques owing to their direct applicability in aqueous environments at ambient temperature and the ability to modify analysis scales by variation of the adsorption cross section.
通过结合原位电动评估水性颗粒与添加阴离子吸附质,我们开发并检验了一种新方法,用于对水中颗粒的比可及表面积进行可扩展表征。对于在弱酸性水悬浮液中具有不同形态的氧化铝粉末,通过逐步添加草酸和柠檬酸,利用羧酸根阴离子吸附来改变有效表面电荷。观察到的zeta电位随比例试剂添加剂的变化呈现出反双曲正弦型行为,这是根据格雷厄姆 - 朗缪尔模型预测的单层吸附所产生的。通过反问题求解进行参数优化,随着相对吸附质添加的zeta电位变化揭示了一个定义的表面积相关参数与粉末常规测量表面积值之间几乎呈线性相关,表明所提出的分析框架适用于水性颗粒物的原位表面积表征。所研究的方法相对于一些传统表面分析技术具有优势,这是由于它们在环境温度下的水性环境中具有直接适用性,并且能够通过改变吸附横截面来调整分析尺度。