University of Chinese Academy of Sciences , Beijing 100049, China.
Max Planck Institute of Colloids and Interfaces , Potsdam 14424, Germany.
ACS Nano. 2018 Feb 27;12(2):1934-1939. doi: 10.1021/acsnano.7b08925. Epub 2018 Jan 22.
Controlled growth of one-dimensional nanostructures is playing a key role in creating types of materials for functional devices. Here, we report procedures for controlled assembly of the dipeptide diphenylalanine (FF) into aligned and ultralong single crystals in a capillary. With the evaporation of solvent, nucleation of the crystal occurred in the confined region, and the crystal grew continuously with a supply of molecules from the concentration gradient system inside the capillary. Based on the "Knudsen regime", an ultralong aligned individual FF single crystal possessing an active optical waveguide property at macroscopic length scale could be obtained. Moreover, capillary is also an effective microdevice to investigate the disassembly process of the FF single crystals. This strategy has potentials to broaden the range of applications of aligned organic nanomaterials.
一维纳米结构的可控生长在为功能器件创造新型材料方面发挥着关键作用。在这里,我们报告了在毛细管中通过控制二肽苯丙氨酸(FF)组装成取向和超长单晶的程序。随着溶剂的蒸发,在受限区域发生晶体成核,并且随着毛细管内浓度梯度系统中分子的供应,晶体不断生长。基于“克努森(Knudsen)区”,可以获得具有宏观长度尺度上的活性光波导性质的超长取向单个 FF 单晶。此外,毛细管也是研究 FF 单晶解组装过程的有效微器件。该策略有可能拓宽取向有机纳米材料的应用范围。