卤化物
水蒸气
吸附
材料科学
金属
吸附
化学
环境化学
无机化学
物理化学
有机化学
冶金
作者
Ali Azmy,Shunran Li,Giasemi K. Angeli,Claire Welton,Parth Raval,Min Li,Nourdine Zibouche,Łukasz Wojtas,G. N. Manjunatha Reddy,Peijun Guo,Pantelis N. Trikalitis,Ioannis Spanopoulos
标识
DOI:10.1002/anie.202218429
摘要
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 II in acidic media gave rise to the first porous and water‐stable 2D metal halide semiconductor (DHS) 2 Pb 5 Br 14 . 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 2 O and D 2 O at room temperature (RT). Solid‐state NMR measurements and DFT calculations verified the incorporation of H 2 O and D 2 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.
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