Empa, Swiss Federal Laboratories for Materials Testing and Research: Nanotech@surfaces Laboratory, Feuerwerkerstrasse 39, CH-3602 Thun, Switzerland.
Langmuir. 2010 Apr 20;26(8):5763-71. doi: 10.1021/la1003758.
We present for the first time a general vacuum process for the growth of supported organic nanowires formed by pi-conjugated molecules, including metalloporphyrins, metallophthalocyanines, and perylenes. This methodology consists on a one-step physical vapor deposition of the pi-conjugated molecules. The synthesis is carried out at controlled temperature on substrates with tailor morphology which allows the growth of organic nanowires in the form of squared nanofibers and nanobelts. The study of the nanowires by electron diffraction and HRTEM combining with the results of a theoretical analysis of the possible arrangement of the pi-conjugated molecules along the nanowires reveals that the nanowires show a columnar structure along the fiber axis consisting of pi-stacked molecules having a herringbone-like arrangement. The formation of these nanowires on different substrates demonstrates that the growth mechanism is independent of the substrate chemical composition. An in-depth phenomenological study of the formation of the nanowires drives us to propose a growth mechanism based on a crystallization process. Furthermore, the growth method allows the fabrication of two particular 1D heterostructures: binary and open core@shell organic nanofibers.
我们首次提出了一种通用的真空工艺,用于生长由π共轭分子(包括金属卟啉、金属酞菁和并五苯)形成的负载型有机纳米线。该方法包括一步物理气相沉积π共轭分子。在具有定制形貌的基底上,在受控温度下进行合成,这允许以正方形纳米纤维和纳米带的形式生长有机纳米线。通过电子衍射和 HRTEM 的研究,并结合对可能沿纳米线排列的π共轭分子的理论分析结果表明,纳米线沿纤维轴具有柱状结构,由具有鱼骨状排列的π堆积分子组成。在不同的基底上形成这些纳米线证明了生长机制与基底化学成分无关。对纳米线形成的深入现象学研究促使我们提出了一种基于结晶过程的生长机制。此外,该生长方法允许制造两种特殊的 1D 异质结构:二元和开核@壳有机纳米纤维。