Yu Wenxi, Yi Xijian, Yan Jianwei, Cheng Juan, Ou Siyu, Xue Qiong
School of Packaging Engineering, Hunan University of Technology, Zhuzhou 412007, China.
State Key Laboratory of Performance Monitoring and Protecting of Rail Transit Infrastructure, East China Jiaotong University, Nanchang 330013, China.
Materials (Basel). 2025 May 17;18(10):2338. doi: 10.3390/ma18102338.
This study employs molecular dynamics simulations to construct designed unit cells of organic montmorillonite (OMMT) modified with four types of quaternary ammonium salts. The effects of modifier type and quantity on the basal spacing of montmorillonite (MMT) were analyzed. Molecular motion, morphology, interaction energy (), and hydrogen bonding interactions were investigated to elucidate the molecular-level mechanisms between modifiers and MMT. The results indicate that the organic modification of MMT proceeds in three distinct stages: the filled stage, saturated stage, and supersaturated stage. During the filled stage, the basal spacing remains largely unchanged while increases rapidly. In the saturated stage, the basal spacing expands as the growth rate of slows. In the supersaturated stage, the basal spacing continues to increase while stabilizes. The transition from the filled to saturated stage is governed by the van der Waals space occupied by the modifiers. Within the MMT interlayer, the modifiers adopt a bilayer morphology, with the nitrogen atom heads adhering to the MMT surfaces and the tails self-assembling. These findings provide theoretical insights into the basal spacing expansion and organic modification mechanisms of MMT, thereby facilitating improved material compatibility.
本研究采用分子动力学模拟构建了用四种季铵盐改性的有机蒙脱石(OMMT)的设计晶胞。分析了改性剂类型和用量对蒙脱石(MMT)层间距的影响。研究了分子运动、形态、相互作用能()和氢键相互作用,以阐明改性剂与MMT之间的分子水平机制。结果表明,MMT的有机改性过程分为三个不同阶段:填充阶段、饱和阶段和过饱和阶段。在填充阶段,层间距基本保持不变,而迅速增加。在饱和阶段,随着的生长速率减慢,层间距扩大。在过饱和阶段,层间距继续增加,而稳定。从填充阶段到饱和阶段的转变受改性剂占据的范德华空间控制。在MMT层间,改性剂呈现双层形态,氮原子头附着在MMT表面,尾部自组装。这些发现为MMT的层间距扩展和有机改性机制提供了理论见解,从而有助于提高材料相容性。