Vo Timothy H, Shekhirev Mikhail, Lipatov Alexey, Korlacki Rafal A, Sinitskii Alexander
Department of Chemistry, University of Nebraska - Lincoln, Lincoln, NE 68588, USA.
Faraday Discuss. 2014;173:105-13. doi: 10.1039/c4fd00131a.
Graphene nanoribbons (GNRs) have received a great deal of attention due to their promise for electronic and optoelectronic applications. Several recent studies have focused on the synthesis of GNRs by the bottom-up approaches that could yield very narrow GNRs with atomically precise edges. One type of GNRs that has received a considerable attention is the chevron-like GNR with a very distinct periodic structure. Surface-assisted and solution-based synthetic approaches for the chevron-like GNRs have been developed, but their electronic properties have not been reported yet. In this work, we synthesized chevron-like GNRs in bulk by a solution-based method, characterized them by a number of spectroscopic techniques and measured their bulk conductivity. We demonstrate that solution-synthesized chevron-like GNRs are electrically conductive in bulk, which makes them a potentially promising material for applications in organic electronics and photovoltaics.
石墨烯纳米带(GNRs)因其在电子和光电子应用方面的潜力而备受关注。最近的几项研究集中在通过自下而上的方法合成GNRs,这种方法可以产生具有原子精确边缘的非常窄的GNRs。一种受到相当关注的GNRs是具有非常独特周期性结构的人字形GNRs。已经开发了用于人字形GNRs的表面辅助和基于溶液的合成方法,但尚未报道它们的电子性质。在这项工作中,我们通过基于溶液的方法大量合成了人字形GNRs,用多种光谱技术对其进行了表征,并测量了它们的体电导率。我们证明,溶液合成的人字形GNRs在整体上是导电的,这使其成为有机电子学和光伏应用中潜在的有前途的材料。