Supramolecular Metal Halide Complexes for High-Temperature Nonlinear Optical Switches

化学 卤化物 光激发 超分子化学 二次谐波产生 相变 冠醚 化学物理 光化学 光电子学 纳米技术 分子 无机化学 有机化学 光学 材料科学 激光器 离子 原子物理学 物理 量子力学 激发态
作者
Qian Wang,Jianbo Jin,Zhongxuan Wang,Shenqiang Ren,Qingyu Ye,Yixuan Dou,S. Liu,Amanda J. Morris,Carla Slebodnick,Li Na Quan
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:146 (13): 8971-8980
标识
DOI:10.1021/jacs.3c13079
摘要

Nonlinear optical (NLO) switching materials, which exhibit reversible intensity modulation in response to thermal stimuli, have found extensive applications across diverse fields including sensing, photoelectronics, and photonic applications. While significant progress has been made in solid-state NLO switching materials, these materials typically showcase their highest NLO performance near room temperature. However, this performance drastically deteriorates upon heating, primarily due to the phase transition undergone by the materials from noncentrosymmetric to centrosymmetric phase. Here, we introduce a new class of NLO switching materials, solid-state supramolecular compounds 18-Crown-6 ether@Cu2Cl4·4H2O (1·4H2O), exhibiting reversible and stable NLO switching when subjected to near-infrared (NIR) photoexcitation and/or thermal stimuli. The reversible crystal structure in response to external stimuli is attributed to the presence of a weakly coordinated bridging water molecule facilitated by hydrogen bonding/chelation interactions between the metal halide and crown-ether supramolecules. We observed an exceptionally high second-harmonic generation (SHG) signal under continuous photoexcitation, even at temperatures exceeding 110 °C. In addition, the bridging water molecules within the complex can be released and recaptured in a fully reversible manner, all without requiring excessive energy input. This feature allows for precise control of SHG signal activation and deactivation through structural transformations, resulting in a high-contrast off/on ratio, reaching values in the million-fold range.
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