偏高岭土
材料科学
聚合物
介电谱
离子电导率
无定形固体
硅酸铝
介孔材料
陶瓷
化学工程
复合材料
扩散
电导率
分析化学(期刊)
矿物学
大气温度范围
热传导
离子键合
陶瓷基复合材料
活化能
表征(材料科学)
光谱学
莫来石
基质(化学分析)
电阻抗
活性材料
热导率
无机化学
作者
Sandrine Gomes,Fabrice Leroux,Guillaume Renaudin
出处
期刊:Clay Minerals
[Cambridge University Press]
日期:2026-01-15
卷期号:61 (1): 18-31
标识
DOI:10.1180/clm.2026.10022
摘要
Abstract The precise characterization of the mesoporous mineral matrix of a geopolymer is greatly complicated by its amorphous nature. No conventional characterization technique allows for its direct investigation. We propose here the use of alternative current impedance spectroscopy (AC-IS; generally called ‘complex impedance spectroscopy’) as an indirect method for probing geopolymers via their ionic conduction properties. Our study of ∼50 K-geopolymer pellets using AC-IS has made it possible to better describe the mesoporosity of alkali-activated materials. The latter were prepared by partial substitution of metakaolin by argillite, and these were then subjected to heat treatment up to 900°C and exposed for a long time to high or low relative humidity. The metakaolin substitution rate along with post-synthesis temperature and storage conditions were the variables that allowed us to track the phenomenon of charge transport via mesoporosity. Refining the impedance spectra over a range of temperatures, using simple and robust models, provided a set of values for the activation energies and diffusion coefficients. The results confirmed the open and ‘through-hole’ nature of the porosity, the localization of K + cations in the interstitial liquid and their diffusion through the amorphous ceramic matrix during heat treatment, as well as the possible resumption of long-term alkaline activation for poorly reactive aluminosilicate sources.
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