Hong Yongming, Bao Senyang, Xiang Xiang, Wang Xinping
Department of Chemistry, Zhejiang Sci-Tech University, Hangzhou 310018, China.
ACS Macro Lett. 2020 Jun 16;9(6):889-894. doi: 10.1021/acsmacrolett.0c00279. Epub 2020 Jun 3.
The interfacial orientation of aromatic groups plays a crucial role in determining the properties of graphene-based aromatic polymer nanocomposites. Here, the interfacial orientation of the polystyrene (PS) phenyl groups in contact with graphene is revealed by sum frequency generation (SFG) vibrational spectroscopy. The SFG spectra showed that the orientation of the phenyl groups is closely related to the interfacial concentration as the chains reach the quasi-equilibrium state. The phenyl groups remain in a relatively unrestricted state at a low concentration of the PS phenyl groups, and they prefer to recline to more favorably interact with graphene via a face-to-face configuration. Densely stacked phenyl groups are too crowded to form multilayer face-to-face interactions with graphene, and they prefer to remain upright, while π-π interactions are formed among the phenyl groups themselves in addition to the edge-to-face interactions to maximize the bonding energy of the π-π interactions. This is enthalpically favorable and driven mainly by the π-π interactions. This work provides important knowledge for the design and optimization of functional graphene-based aromatic polymer nanocomposites.
芳香族基团的界面取向在决定基于石墨烯的芳香族聚合物纳米复合材料的性能方面起着至关重要的作用。在此,通过和频振动光谱(SFG)揭示了与石墨烯接触的聚苯乙烯(PS)苯基的界面取向。SFG光谱表明,当链达到准平衡状态时,苯基的取向与界面浓度密切相关。在低浓度的PS苯基时,苯基处于相对不受限制的状态,并且它们倾向于通过面对面构型倾斜以更有利地与石墨烯相互作用。密集堆积的苯基过于拥挤,无法与石墨烯形成多层面对面相互作用,它们倾向于保持直立,而除了边对面相互作用外,苯基自身之间还形成π-π相互作用,以最大化π-π相互作用的键能。这在焓上是有利的,并且主要由π-π相互作用驱动。这项工作为功能性基于石墨烯的芳香族聚合物纳米复合材料的设计和优化提供了重要知识。