Lee Seungyeol
Department of Earth and Environmental Sciences Chungbuk National University 28644Cheongju-si Republic of Korea.
J Appl Crystallogr. 2025 Jun 20;58(Pt 4):1185-1190. doi: 10.1107/S1600576725004170. eCollection 2025 Aug 1.
Illite, a widespread clay mineral, plays a pivotal role in geological processes, notably as an indicator in diagenetic and hydro-thermal alteration environments, and possesses significant industrial relevance in applications including ceramics, construction and catalysis. However, challenges including its nanoscale crystallinity, structural disorder and frequent interstratification with other clay minerals have hindered detailed structural characterization using conventional X-ray diffraction (XRD) techniques. This study employs integrated synchrotron XRD and pair distribution function (PDF) analysis to elucidate the crystal structure of the 1M illite polytype, yielding the first determination of its anisotropic atomic displacement parameters ( ). These parameters provide critical insights into atomic dynamics and static disorder within the structure, enabling a more refined understanding of structure-property relationships. This integrated approach, combining synchrotron XRD, Rietveld refinement and PDF analysis, yields a comprehensive structural characterization, capturing both average crystallographic and local atomic arrangements. Considering illite's widespread geological occurrence and industrial importance, this high-precision structural dataset, especially the determined values, provides a crucial benchmark for future modeling and simulation efforts targeting accurate prediction of its physicochemical behavior.
伊利石是一种广泛分布的粘土矿物,在地质过程中起着关键作用,特别是作为成岩和热液蚀变环境的指标,并且在陶瓷、建筑和催化等应用中具有重要的工业相关性。然而,包括其纳米级结晶度、结构无序以及与其他粘土矿物频繁的层间排列等挑战,阻碍了使用传统X射线衍射(XRD)技术进行详细的结构表征。本研究采用同步辐射XRD和对分布函数(PDF)分析相结合的方法来阐明1M伊利石多型体的晶体结构,首次确定了其各向异性原子位移参数( )。这些参数为结构内的原子动力学和静态无序提供了关键见解,从而能够更精确地理解结构-性能关系。这种结合同步辐射XRD、Rietveld精修和PDF分析的综合方法,产生了全面的结构表征,捕捉了平均晶体学和局部原子排列。考虑到伊利石广泛的地质分布和工业重要性,这个高精度的结构数据集,特别是确定的 值,为未来旨在准确预测其物理化学行为的建模和模拟工作提供了关键基准。