Suppr超能文献

通过简单的去湿方法制备花菁复合物微区的有序阵列。

Preparation of an ordered array of cyanine complex microdomes by a simple dewetting method.

作者信息

Hashimoto Yuichi, Karthaus Olaf

机构信息

Chitose Institute of Science and Technology, Faculty of Photonics Science, Department of Photonic Materials, 758-65 Bibi, Chitose, Hokkaido, Japan 066-8655.

出版信息

J Colloid Interface Sci. 2007 Jul 1;311(1):289-95. doi: 10.1016/j.jcis.2007.02.055. Epub 2007 Mar 23.

Abstract

We demonstrate a simple method for fabricating a two-dimensional array of microdomes that consist of cyanine dye complexes. Investigation of the morphology and the fluorescence emission of microdomes was carried out before/after annealing. The principal of microdome formation is "dewetting," which is a self-organization phenomena. Generally, one can observe dewetting when a liquid film breaks spontaneously on a nonwettable substrate, leaving droplets or patterns on the substrate. A cyanine dye complex was prepared from a cationic cyanine dye and an anionic amphiphile, or vice versa, an anionic dye and a cationic amphiphile. When a chloroform solution of the cyanine complex was spread on a glass substrate by a roller, microdomes of the cyanine dye complex formed in dewetted films. The roller draws the three-phase line (the air-solid-liquid boundary of the droplet of the chloroform solution) with a constant rate. Thus dewetting can be controlled and leads to a two-dimensional ordered array of uniform sized microdomes. The diameter and height of microdomes decrease with increasing roller speed. Fluorescence microscopy shows that the cyanine dye complex formed J-aggregates. Annealing caused transformation of the dome morphology and a change of the fluorescence spectra. The microdome transformed into anisotropic crystals or became amorphous depending on the molecular structure of the cyanine dye.

摘要

我们展示了一种制备由花菁染料复合物组成的二维微穹顶阵列的简单方法。在退火前后对微穹顶的形态和荧光发射进行了研究。微穹顶形成的原理是“去湿”,这是一种自组织现象。一般来说,当液膜在不可润湿的基底上自发破裂,在基底上留下液滴或图案时,就可以观察到去湿现象。花菁染料复合物由阳离子花菁染料和阴离子两亲物制备而成,或者反之,由阴离子染料和阳离子两亲物制备而成。当通过滚筒将花菁复合物的氯仿溶液铺展在玻璃基底上时,在去湿膜中形成了花菁染料复合物的微穹顶。滚筒以恒定速率拉动三相线(氯仿溶液液滴的气-固-液边界)。因此,可以控制去湿并导致形成尺寸均匀的二维有序微穹顶阵列。微穹顶的直径和高度随着滚筒速度的增加而减小。荧光显微镜显示花菁染料复合物形成了J-聚集体。退火导致穹顶形态的转变和荧光光谱的变化。根据花菁染料的分子结构,微穹顶转变为各向异性晶体或变成无定形。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验