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脱氢苯并[18]轮烯衍生物的合成及自组装单分子层的形成:核心尺寸对烷基链相互交错的影响

Synthesis of dehydrobenzo[18]annulene derivatives and formation of self-assembled monolayers: implications of core size on alkyl chain interdigitation.

作者信息

Tahara Kazukuni, Johnson Charles A, Fujita Takumi, Sonoda Motohiro, De Schryver Frans C, De Feyter Steven, Haley Michael M, Tobe Yoshito

机构信息

Division of Frontier Materials Science, Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka 560-8531, Japan.

出版信息

Langmuir. 2007 Sep 25;23(20):10190-7. doi: 10.1021/la701663j. Epub 2007 Aug 31.

Abstract

The synthesis of a series of dodecadehydrotribenzo[18]annulene ([18]DBA) derivatives is reported, together with their steady-state absorption and fluorescence properties. The main focus, though, is on the self-assembly of these compounds at the liquid-solid interface as investigated with scanning tunneling microscopy (STM), highlighting the effect of alkyl chain orientation and alkyl chain length on the molecular ordering. Owing to the large triangular pi-electron system of the [18]DBAs, two different types of alkyl chain orientation are observed. The observed changes in the monolayer networks upon elongation of the alkyl chains are attributed to the increased van der Waals interactions between molecules and substrate. The effect of the core size on the alkyl chain orientation and, as a result, the monolayer structure is discussed in relation to the results obtained previously for triangularly-shaped dehydrobenzo [12]annulene ([12]DBA) derivatives and triphenylene derivatives. A guideline for substituent spacing allowing control of molecular alignment for large planar pi-electron systems utilizing directional alkyl chain interdigitation is also discussed.

摘要

本文报道了一系列十二氢三苯并[18]轮烯([18]DBA)衍生物的合成及其稳态吸收和荧光性质。不过,主要重点是通过扫描隧道显微镜(STM)研究这些化合物在液-固界面的自组装,突出了烷基链取向和烷基链长度对分子有序性的影响。由于[18]DBA具有较大的三角形π电子体系,观察到了两种不同类型的烷基链取向。烷基链伸长时单层网络中观察到的变化归因于分子与底物之间范德华相互作用的增加。结合先前针对三角形脱氢苯并[12]轮烯([12]DBA)衍生物和三亚苯衍生物获得的结果,讨论了核心尺寸对烷基链取向以及单层结构的影响。还讨论了利用定向烷基链相互穿插来控制大型平面π电子体系分子排列的取代基间距指南。

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