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基于金属有机框架的混合基质膜中具有巨大对比度的偏振激光切换

Polarized Laser Switching with Giant Contrast in MOF-Based Mixed-Matrix Membrane.

作者信息

Li Hongjun, Zhang Lin, Yang Yu, Hu Enlai, Li Bin, Cui Yuanjing, Yang Deren, Qian Guodong

机构信息

State Key Laboratory of Silicon Materials, Cyrus Tang Center for Sensor Materials and Applications, School of Materials Science and Engineering, Zhejiang University, Hangzhou, 310027, China.

出版信息

Adv Sci (Weinh). 2022 Jun;9(17):e2200953. doi: 10.1002/advs.202200953. Epub 2022 Apr 11.

Abstract

Nonlinear optical (NLO) switch materials have attracted considerable attention in photonics. Although various materials based on complex structural transitions have been developed extensively, the studies on light-driven up-conversion laser switches are rare, which have advantages including easy operations at room temperature and high contrasts. Here, the concept of photoswitch building unit is proposed to construct a novel sandwich-like mixed-matrix membrane. Dye@metal-organic framework (MOF) crystals and spirooxazine are regarded as the laser emission and absorption units, followed by their hierarchical encapsulation into the polydimethylsiloxane carrier unit. Excited MOF microcrystals exhibit two-photon pumped lasing anisotropy, with an ultrahigh degree of linear polarization (≈99.9%). Photochromic molecules can be interconverted by the external ultraviolet stimulus, causing sharp absorption-band variations and inducing the laser emission or quenching. Such up-conversion polarized laser switch material is reported for the first time. Record-high NLO contrast (≈6.1 × 10 ) among the solid-state NLO switch materials can be obtained through simultaneously controlling the ultraviolet irradiation and the emission-detected polarization direction at room temperature.

摘要

非线性光学(NLO)开关材料在光子学领域引起了广泛关注。尽管基于复杂结构转变的各种材料已得到广泛开发,但对光驱动上转换激光开关的研究却很少,这种开关具有在室温下易于操作和高对比度等优点。在此,提出了光开关构建单元的概念,以构建一种新型的三明治状混合基质膜。染料@金属有机框架(MOF)晶体和螺恶嗪被视为激光发射和吸收单元,随后将它们分层封装到聚二甲基硅氧烷载体单元中。受激的MOF微晶表现出双光子泵浦激光各向异性,具有超高的线性偏振度(≈99.9%)。光致变色分子可通过外部紫外线刺激进行相互转换,导致吸收带急剧变化,并引发激光发射或猝灭。首次报道了这种上转换偏振激光开关材料。通过在室温下同时控制紫外线照射和发射检测偏振方向,可在固态NLO开关材料中获得创纪录的高NLO对比度(≈6.1×10)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6f1/9189632/96ceefb86e98/ADVS-9-2200953-g001.jpg

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