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2D organic‐inorganic hybrid perovskite materials for nonlinear optics

Xiao HanSchool of Materials Science and Engineering National Institute for Advanced Materials Nankai University Tongyan Road 38 Tianjin 300350 P.R. ChinaYongshen ZhengSchool of Materials Science and Engineering National Institute for Advanced Materials Nankai University Tongyan Road 38 Tianjin 300350 P.R. ChinaSiqian ChaiSchool of Materials Science and Engineering National Institute for Advanced Materials Nankai University Tongyan Road 38 Tianjin 300350 P.R. ChinaSonghua ChenCollege of Chemistry and Material Science Longyan University Longyan 364012 Fujian P.R. ChinaJialiang XuSchool of Materials Science and Engineering National Institute for Advanced Materials Nankai University Tongyan Road 38 Tianjin 300350 P.R. China
2020en
ABI

Аннотация

Abstract Two‐dimensional (2D) organic‐inorganic hybrid perovskites feature characteristics of inherent quantum‐well structures and intriguing optoelectronic properties, and have therefore attracted enormous research attention for their optical applications in light emitting, sensing, modulation, and telecommunication devices. The low‐cost and solution‐processed fabrications as well as alternative organic spacer cations endue 2D hybrid perovskites with higher tunability in optical and photonic applications. In particular, they demonstrate distinguished nonlinear optical characters such as second‐harmonic generation (SHG), two‐photon absorption (2PA), and saturable absorption (SA) under the excitation of laser pulses. Here, we discuss the construction of the various sorts of 2D hybrid perovskites with different structural features. We have also highlighted some representative properties and applications of these 2D hybrid perovskites in both linear and nonlinear optical regimes.

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