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Correlation of montmorillonite exfoliation with interlayer cations in the preparation of two-dimensional nanosheets

机译:制备二维纳米片时蒙脱土剥离与层间阳离子的相关性

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Montmorillonite (MMT) could be easily exfoliated into two-dimensional (2D) MMT nanosheets, leading to potential applications in many fields. In this work, the varying exfoliation properties of Na– and Ca–MMTs were investigated through atomic force microscopy (AFM) and molecular dynamics simulation for energy calculation in order to understand the effect of interlayer cations on the preparation of 2D MMT nanosheets. AFM results showed direct evidence that Na–MMT is easier to be exfoliated than Ca–MMT in the 2D nanosheet preparation. This observation was due to Ca–MMT having a higher interlayer binding energy (IBE) than Na–MMT because of the charge effect of the cations. Besides, the interaction energy between the water layer and two MMT layers (EW–M) of Na–MMTs was lower than that of Ca–MMTs at the same water content. In addition, it was found the exfoliated Ca–MMT had a larger particle diameter than that of exfoliated Na–MMT. These findings might be helpful for the preparation and application of 2D MMT nanosheets through controlling the exfoliation of MMT.
机译:蒙脱石(MMT)可以轻松剥离成二维(2D)MMT纳米片,从而在许多领域都有潜在的应用。在这项工作中,通过原子力显微镜(AFM)和分子动力学模拟研究了Na-和Ca-MMTs的不同剥落特性,以计算能量,以了解层间阳离子对二维MMT纳米片制备的影响。 AFM结果显示直接证据表明,在二维纳米片制备中,Na–MMT比Ca–MMT更容易剥落。该观察结果是由于阳离子的电荷效应,Ca-MMT的层间结合能(IBE)比Na-MMT高。此外,Na–MMTs的水层与两个MMT层( E W–M )之间的相互作用能低于Ca。 –含水量相同的MMT。此外,还发现脱落的Ca–MMT的粒径大于脱落的Na–MMT的粒径。这些发现可能有助于通过控制MMT的剥离来制备和应用2D MMT纳米片。

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