Mitchell Jimmie, Weimer Jeffrey J
Langmuir. 2021 May 4;37(17):5139-5150. doi: 10.1021/acs.langmuir.1c00032. Epub 2021 Apr 19.
We report on using a controlled spreading rate to create Langmuir films of nanoparticles with more uniform, macroscale packing. A dispersion of hydrophobic quantum dots in -hexane was deposited on subphase solutions containing various compositions of water and glycerol. Fluorescence images were captured as the film spread radially. An average spreading rate was defined using film radius and time at maximum expansion. On water with the highest spreading rate, films have an open region surrounded by a coffee ring. At a well-defined slower spreading rate, a distinct inner compact region appears between the open film and coffee ring, now called an outer compact region. As the spreading rate decreases further, the relative position for the open film boundary moves inward while the relative areas for the inner and outer compact regions increase. Films are the smallest in size at the slowest spreading rate on glycerol. The patterns are button-like with a central depleted region (open film), compact inner and outer regions, and a less-dense outer edge region. Normalized radial profiles were used to generate a partition map for the relative radial positions marking each film region at different spreading rates. Area number densities were calculated in the highest-packed regions. The values give no conclusive evidence that nanoparticles stack as multilayers, even the most compactly covered regions. Films spreading on glycerol form the most uniform, circular-shaped, densely packed arrangement of nanoparticles as their final pattern.
我们报告了使用可控的铺展速率来制备具有更均匀、宏观尺度堆积的纳米颗粒朗缪尔膜。将疏水性量子点在正己烷中的分散体沉积在含有不同水和甘油组成的亚相溶液上。当膜径向铺展时捕获荧光图像。使用膜半径和最大膨胀时的时间定义平均铺展速率。在铺展速率最高的水上,膜有一个被咖啡环包围的开放区域。在一个明确较慢的铺展速率下,在开放膜和咖啡环(现称为外部致密区域)之间出现一个明显的内部致密区域。随着铺展速率进一步降低,开放膜边界的相对位置向内移动,而内部和外部致密区域的相对面积增加。在甘油上以最慢铺展速率时膜的尺寸最小。这些图案呈纽扣状,有一个中心耗尽区域(开放膜)、致密的内部和外部区域以及一个密度较小的外边缘区域。使用归一化径向轮廓生成一个分区图,用于标记不同铺展速率下每个膜区域的相对径向位置。在堆积最紧密的区域计算面积数密度。这些值没有给出确凿证据表明纳米颗粒堆叠成多层,即使是覆盖最紧密地区域。在甘油上铺展的膜形成了纳米颗粒最均匀、圆形、紧密堆积的最终排列模式。