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多孔水稳定二维混合卤化物具有宽发射带和选择性 H<sub>2</sub>O/ VOCs 吸附性能。

Porous and Water Stable 2D Hybrid Metal Halide with Broad Light Emission and Selective H O Vapor Sorption.

机构信息

Department of Chemistry, University of South Florida, Tampa, FL 33620, USA.

Department of Chemical and Environmental Engineering, Yale University, 9 Hillhouse Avenue, New Haven, CT 06520, USA.

出版信息

Angew Chem Int Ed Engl. 2023 Mar 13;62(12):e202218429. doi: 10.1002/anie.202218429. Epub 2023 Feb 10.

Abstract

In this work we report a strategy for generating porosity in hybrid metal halide materials using molecular cages that serve as both structure-directing agents and counter-cations. Reaction of the [2.2.2] cryptand (DHS) linker with Pb in acidic media gave rise to the first porous and water-stable 2D metal halide semiconductor (DHS) Pb Br . The corresponding material is stable in water for a year, while gas and vapor-sorption studies revealed that it can selectively and reversibly adsorb H O and D O at room temperature (RT). Solid-state NMR measurements and DFT calculations verified the incorporation of H O and D O in the organic linker cavities and shed light on their molecular configuration. In addition to porosity, the material exhibits broad light emission centered at 617 nm with a full width at half-maximum (FWHM) of 284 nm (0.96 eV). The recorded water stability is unparalleled for hybrid metal halide and perovskite materials, while the generation of porosity opens new pathways towards unexplored applications (e.g. solid-state batteries) for this class of hybrid semiconductors.

摘要

在这项工作中,我们报告了一种使用分子笼在混合卤化物材料中产生孔隙的策略,这些分子笼既可以作为结构导向剂,也可以作为抗衡阳离子。[2.2.2]穴醚(DHS)配体与 Pb 在酸性介质中的反应产生了第一个多孔且水稳定的 2D 金属卤化物半导体(DHS)PbBr。相应的材料在水中稳定一年,而气体和蒸汽吸附研究表明,它可以在室温下选择性和可逆地吸附 H2O 和 D2O。固态 NMR 测量和 DFT 计算证实了 H2O 和 D2O 掺入有机配体腔中,并阐明了它们的分子构型。除了多孔性外,该材料还表现出以 617nm 为中心的宽发射,半峰全宽(FWHM)为 284nm(0.96eV)。对于混合卤化物和钙钛矿材料来说,所记录的水稳定性是无与伦比的,而孔隙的产生为这一类混合半导体开辟了探索未知应用(例如固态电池)的新途径。

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