材料科学
剥脱关节
膨润土
插层(化学)
复合材料
蒙脱石
球磨机
复合数
化学工程
纳米
胶体
图层(电子)
单层
流变学
超声波传感器
粘度
比表面积
膜
球(数学)
表面能
工作(物理)
作者
XiangWen Jiang,Tian Xie,Hai Zheng,Mingliang Tang
出处
期刊:NANO
[World Scientific]
日期:2026-01-16
标识
DOI:10.1142/s1793292026500633
摘要
Efficient exfoliation of montmorillonite (MMT) into single or few-layer nanosheets is essential for its high-value applications in gels, membrane separation and composite reinforcement. In this study, Na[Formula: see text]-exchanged bentonite underwent solvent-free, high-energy ball milling for 2[Formula: see text]h, with the ball-to-powder mass ratio as the sole variable. This method reduces the average layer thickness from [Formula: see text]7[Formula: see text]nm to 1–2[Formula: see text]nm concomitantly enhancing surface charge, colloidal stability, gel viscosity and 24[Formula: see text]h water uptake. In contrast to conventional chemical intercalation and ultrasonic protocols, the proposed approach eliminates the need for organic solvents and costly intercalants, reduces energy consumption by more than 60%, and is characterized by simplicity, scalability and user-friendliness. This work offers a green, low-cost pathway for the large-scale production of high-performance two-dimensional clay nanosheets and their multifunctional composites.
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