Araujo Karolline A S, Cury Luiz A, Matos Matheus J S, Fernandes Thales F D, Cançado Luiz G, Neves Bernardo R A
Departamento de Física - Universidade Federal de Minas Gerais - UFMG, Belo Horizonte, Brazil.
Instituto Federal de Educação, Ciência e Tecnologia de Minas Gerais - IFMG, Ponte Nova, Brazil.
Beilstein J Nanotechnol. 2018 Mar 23;9:963-974. doi: 10.3762/bjnano.9.90. eCollection 2018.
The influence of graphene and retinoic acid (RA) - a π-conjugated organic semiconductor - interface on their hybrid system is investigated. The physical properties of the interface are assessed via scanning probe microscopy, optical spectroscopy (photoluminescence and Raman) and ab initio calculations. The graphene/RA interaction induces the formation of a well-organized π-conjugated self-assembled monolayer (SAM) at the interface. Such structural organization leads to the high optical emission efficiency of the RA SAM, even at room temperature. Additionally, photo-assisted electrical force microscopy, photo-assisted scanning Kelvin probe microscopy and Raman spectroscopy indicate a RA-induced graphene doping and photo-charge generation. Finally, the optical excitation of the RA monolayer generates surface potential changes on the hybrid system. In summary, interface-induced organized structures atop 2D materials may have an important impact on both design and operation of π-conjugated nanomaterial-based hybrid systems.
研究了石墨烯与视黄酸(RA)——一种π共轭有机半导体——界面在其混合体系中的影响。通过扫描探针显微镜、光谱学(光致发光和拉曼光谱)以及从头算计算来评估界面的物理性质。石墨烯/RA相互作用促使在界面处形成有序的π共轭自组装单分子层(SAM)。这种结构组织使得RA SAM即使在室温下也具有高的光发射效率。此外,光辅助电力显微镜、光辅助扫描开尔文探针显微镜和拉曼光谱表明RA诱导了石墨烯掺杂和光生电荷。最后,RA单分子层的光激发在混合体系上产生表面电势变化。总之,二维材料上界面诱导的有序结构可能对基于π共轭纳米材料的混合体系的设计和运行都具有重要影响。