Li Jianmei, Liu Jingyi, Guo Zirui, Chang Zeyu, Guo Yang
State Key Laboratory of Metastable Materials Science and Technology & Key Laboratory for Microstructural Material Physics of Hebei Province, School of Science, Yanshan University, Qinhuangdao 066004, China.
Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
Molecules. 2022 Apr 28;27(9):2807. doi: 10.3390/molecules27092807.
Two-dimensional layered materials are considered ideal platforms to study novel small-scale optoelectronic devices due to their unique electronic structures and fantastic physical properties. However, it is urgent to further improve the light-matter interaction in these materials because their light absorption efficiency is limited by the atomically thin thickness. One of the promising approaches is to engineer the plasmonic environment around 2D materials for modulating light-matter interaction in 2D materials. This method greatly benefits from the advances in the development of nanofabrication and out-plane van der Waals interaction of 2D materials. In this paper, we review a series of recent works on 2D materials integrated with plasmonic environments, including the plasmonic-enhanced photoluminescence quantum yield, strong coupling between plasmons and excitons, nonlinear optics in plasmonic nanocavities, manipulation of chiral optical signals in hybrid nanostructures, and the improvement of the performance of optoelectronic devices based on composite systems.
二维层状材料因其独特的电子结构和优异的物理性质,被认为是研究新型小型光电器件的理想平台。然而,由于其原子级的超薄厚度限制了光吸收效率,因此迫切需要进一步改善这些材料中的光与物质相互作用。一种有前景的方法是在二维材料周围构建等离子体环境,以调制二维材料中的光与物质相互作用。这种方法极大地受益于纳米制造技术的发展以及二维材料的面外范德华相互作用。在本文中,我们综述了一系列关于二维材料与等离子体环境集成的近期研究工作,包括等离子体增强的光致发光量子产率、等离子体与激子之间的强耦合、等离子体纳米腔中的非线性光学、混合纳米结构中手性光信号的操纵以及基于复合系统的光电器件性能的改善。