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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Self-Assembly of Metal Oxide Nanosheets at Liquid-Air Interfaces in Colloidal Solutions
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Self-Assembly of Metal Oxide Nanosheets at Liquid-Air Interfaces in Colloidal Solutions

机译:胶体溶液中液-气界面处金属氧化物纳米片的自组装

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摘要

The oxide nanosheet concentration at the liquid air interface (LAI) is a key parameter in the formation of Langmuir-Blodgett (LB) deposited nanosheet films. Knowledge of the oxide nanosheet concentration at the LAI as a function of process conditions is needed to understand the relevant processes and achieve better control over the LB fabrication process. In this study, the concentration of Ti0.87O2 delta- titanate nanosheets at the LAI was investigated by considering the trend in the lift-up point (LUP) in the surface pressure-surface area isotherm of an LB compression process as a function of time and exfoliation agent. The oxide nanosheet concentrations in the bulk solutions were studied using UV-vis spectroscopy. The results show that the restacking process in the bulk solution does not significantly retard the occurrence of nanosheets at the LAI. The nanosheet concentration changes in the bulk and at the LAI occur on different time scales. Short exfoliation times yield higher nanosheet concentrations at the LAI than longer exfoliation times, in contrast to the bulk where the nanosheet concentration increases in the course of time. We found the same behavior for other metal oxide nanosheet solutions, i.e., iron-doped titanate (Ti0.6Fe0.4O20.4- ) and calcium niobate (Ca2Nb3O10-) nanosheets. The reason behind this phenomenon is likely related to the high degree of adsorption of surfactant molecules on the nanosheet surface after short exfoliation times.
机译:液体空气界面(LAI)上的氧化物纳米片浓度是形成Langmuir-Blodgett(LB)沉积的纳米片薄膜的关键参数。需要了解LAI处的氧化物纳米片浓度与工艺条件的关系,以了解相关工艺并更好地控制LB制造工艺。在这项研究中,通过考虑LB压缩过程的表面压力-表面积等温线的上升点(LUP)随时间变化的趋势,研究了LAI上Ti0.87O2钛酸钛纳米片的浓度。和去角质剂。使用紫外可见光谱研究本体溶液中的氧化物纳米片浓度。结果表明,在本体溶液中的重新堆叠过程不会显着延迟LAI处纳米片的出现。纳米片的体积和LAI的浓度变化发生在不同的时间尺度上。与较长的剥离时间相比,较短的剥离时间在LAI处产生的纳米片浓度要比较长的剥离时间高。我们发现其他金属氧化物纳米片溶液(即铁掺杂的钛酸酯(Ti0.6Fe0.4O20.4-)和铌酸钙(Ca2Nb3O10-)纳米片)具有相同的行为。这种现象背后的原因很可能与表面活性剂分子在短剥离时间后在纳米片表面的高度吸附有关。

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