Recent progress in nonlinear optics of 2D organic-inorganic hybrid perovskites (Invited)

被引:0
|
作者
Zheng Y. [1 ]
Han X. [1 ]
Xu J. [1 ]
机构
[1] School of Materials Science and Engineering, National Institute for Advanced Materials, Nankai University, Tianjin
关键词
2D hybrid perovskites; Nonlinear optics; Quantum-well structure; Structure tunability;
D O I
10.3788/IRLA20201063
中图分类号
学科分类号
摘要
Since the advent of perovskite materials, the numerous organic-inorganic hybrid perovskites have thrived vigorously over the decades. Two-dimensional (2D) organic-inorganic hybrid perovskites containing prototypical inorganic octahedron frames and diverse organic cations feature characteristics of intrinsic quantum-well structures and intriguing optoelectronic properties, and have therefore attracted research attention intensively for their optical applications in light emitting, sensing, modulation, photovoltaic cells and telecommunication devices. The low-cost and solution-processed fabrications as well as the alternative organic spacer cations endue 2D hybrid perovskites with flexible layer distances, number of layers, and variable lattice distortion, leading to effectuate the adjustable frameworks as well as higher tunability in optical and photonic applications. In particular, they also demonstrate distinguished and appealing nonlinear optical (NLO) characters whether in the second-order, third-order NLOs or the higher-order NLOs such as second-harmonic generation (SHG), terahertz generation, two-photon absorption (2PA), and saturable absorption (SA), three-photon absorption (3PA), etc., under the excitation of laser pulses. Here, we discuss on the construction of the various 2D hybrid perovskites with different structural features. Furthermore, some representative properties and applications of these 2D hybrid perovskites are discussed in both linear and nonlinear optical regimes. Lastly, the status quo and challenge of 2D hybrid perovskites are elevated, and the future developments of 2D hybrid perovskites is prospected. Copyright ©2020 Infrared and Laser Engineering. All rights reserved.
引用
收藏
相关论文
共 192 条
  • [41] Li G, Zhang S, Zentgraf T., Nonlinear photonic metasurfaces, Nat Rev Mater, 2, (2017)
  • [42] Ye W, Zeuner F, Li X, Et al., Spin and wavelength multiplexed nonlinear metasurface holography, Nat Commun, 7, (2016)
  • [43] Xing C, Jing G, Liang X, Et al., Graphene oxide/black phosphorus nanoflake aerogels with robust thermo-stability and significantly enhanced photothermal properties in air, Nanoscale, 9, pp. 8096-8101, (2017)
  • [44] Jiang X, Liu S, Liang W, Et al., Broadband nonlinear photonics in few-layer MXene Ti<sub>3</sub>C<sub>2</sub>T<sub>x</sub>(T = F, O, or OH), Laser Photonics Rev, 12, (2018)
  • [45] Lu L, Tang X, Cao R, Et al., Broadband nonlinear optical response in few-layer antimonene and antimonene quantum dots: a promising optical kerr media with enhanced stability, Adv Opt Mater, 5, (2017)
  • [46] Welford W T., The Principles of Nonlinear Optics, Journal of Modern Optics, 21, 4, (1985)
  • [47] Dalton L R, Harper A W, Ghosn R, Et al., Synthesis and processing of improved organic second-order nonlinear optical materials for applications in photonics, Chem Mater, 7, pp. 1060-1081, (1995)
  • [48] Saleh B E A, Teich M C., Fundamentals of photonics~Wiley, Spie Org, 45, (2007)
  • [49] Zhang R, Fan J, Zhang X, Et al., Nonlinear optical response of organic-onorganic halide perovskites, ACS Photonics, 3, pp. 371-377, (2016)
  • [50] Xu J, Semin S, Rasing T, Et al., Organized chromophoric assemblies for nonlinear optical materials: towards (sub)wavelength scale architectures, Small, 11, pp. 1113-1129, (2015)