Department of Chemistry, National University of Singapore, 3 Science Drive 3, Republic of Singapore 117543.
Nanoscale. 2011 Apr;3(4):1855-60. doi: 10.1039/c0nr01012j. Epub 2011 Mar 7.
Radially oriented anthracene nanowires and their self-assembled concentric ring arrays were prepared through a facial solvent-evaporation method. The successful growth of anthracene nanowires can be attributed to a combined mechanism of molecular self-assembly facilitated by strong π-π intermolecular interactions together with evaporation-induced capillary flow and fingering instability. Their radial orientation is determined by the capillary flow; their shape (either straight or curved nanowires) is governed by the competition between the capillary and Marangoni convectional flows. The self-assembly of nanowires into large-scale concentric ring arrays can be interpreted in terms of the repeated slipping-and-sticking motions of the contact line. The high-quality crystalline anthracene nanowire arrays exhibit size-dependent fluorescence emission with high-degree anisotropy.
通过一种简便的溶剂挥发方法制备出了具有放射状取向的蒽纳米线及其自组装的同心环阵列。蒽纳米线的成功生长可以归因于强π-π分子间相互作用促进的分子自组装与蒸发诱导的毛细流和指状不稳定性相结合的综合机制。它们的放射状取向是由毛细流决定的;它们的形状(无论是直纳米线还是弯曲纳米线)则由毛细流和马兰戈尼对流之间的竞争决定。纳米线通过反复的滑动-黏附运动自组装成大规模的同心环阵列。高质量的结晶蒽纳米线阵列表现出具有高度各向异性的尺寸依赖性荧光发射。