National Institute of Advanced Industrial Science and Technology, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8562, Japan.
Langmuir. 2010 Mar 2;26(5):3376-81. doi: 10.1021/la903156m.
Bipyridine derivatives (bpys) with various number and length of peripheral alkyl chains (with carbon numbers of n = 11-17) were synthesized, and their self-assembled monolayers were observed by scanning tunneling microscopy (STM) at a 1-phenyloctane/highly oriented pyrolytic graphite (HOPG) interface. The effects of the number, the substitution position, and the length of alkyl chains on the two-dimensional structures were systematically studied. Bpys substituted by a single alkyl chain in the p-position on each side adopted an almost linear form with zigzag-type alignment of the pi-conjugated unit, whereas, in the case of m-substitution, the bpys showed Z-shaped morphology with interdigitated alkyl chains. In both cases, no odd-even alkyl chain length effects were observed. The bpys with double alkyl chains at m- and p-positions displayed odd-even alkyl chain effects, suggesting that the formation of two-dimensional structure is dominated by the interactions between alkyl chains. Bpys with triple alkyl chains at o-, m-, and p-positions also showed odd-even alkyl chain effects, but only for the higher number of carbon atoms in the alkyl chain unit (n = 14-17). These results indicate that concerted intermolecular interactions of the alkyl chain unit introduce the odd-even chain length effect on the self-assembled two-dimensional structure. After coordination of PdCl(2), odd-even effects were quenched, and bpys were converged into the same lamellar structure, in which the molecules are almost linear. All the structural differences due to the odd-even alkyl chain length effect were explained in terms of intermolecular and molecule-substrate interactions.
联吡啶衍生物 (bpys) 具有不同数量和长度的外围烷基链(碳数 n = 11-17),通过扫描隧道显微镜 (STM) 在 1-苯基辛烷/高取向热解石墨 (HOPG) 界面观察到它们的自组装单层。系统研究了烷基链的数量、取代位置和长度对二维结构的影响。在两侧对位取代的单烷基链 bpys 采用近乎线性的形式,具有π共轭单元的锯齿型排列,而在间位取代的情况下,bpys 呈现出具有互穿插烷基链的 Z 形形态。在这两种情况下,都没有观察到奇数-偶数烷基链长度效应。在 m-和 p-位具有双烷基链的 bpys 表现出奇数-偶数烷基链效应,表明二维结构的形成主要受烷基链之间相互作用的控制。在 o-、m-和 p-位具有三烷基链的 bpys 也表现出奇数-偶数烷基链效应,但仅对于烷基链单元中的碳原子数较高(n = 14-17)。这些结果表明,烷基链单元的协同分子间相互作用引入了对自组装二维结构的奇数-偶数链长效应。在 PdCl2 配位后,奇数-偶数效应被猝灭,bpys 收敛到相同的层状结构,其中分子几乎呈线性。所有由于奇数-偶数烷基链长度效应引起的结构差异都可以用分子间和分子-衬底相互作用来解释。