Inorganic Chemistry · 2021 · 75 citations · 49 references
Low-dimensional organic–inorganic metal halides have recently emerged as a class of promising luminescent materials. However, the intrinsic toxicity of lead would strongly hamper future application. Herein, we synthesized a new type of lead-free zero-dimensional (0D) antimony-based organic–inorganic metal halide single crystals, (PPZ)2SbCl7·5H2O (PPZ = 1-phenylpiperazine), which features a broadband emission at 720 nm. Ultrafast transient absorption and temperature-dependent photoluminescence (PL) spectra are combined to investigate the PL mechanism, revealing that self-trapped exciton recombination was involved. Furthermore, it is interesting that (PPZ)2SbCl7·5H2O material shows reversible PL emission transformation between red light (720 nm) and yellow light (590 nm) as water molecules are inserted or removed from the lattice. Such reversible emission transformation phenomenon renders the (PPZ)2SbCl7·5H2O as a potential low-cost water sensing material.
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Low-Dimensional Organometal Halide Perovskites
Haoran Lin, Chenkun Zhou, Yu Tian et al. · ACS Energy Letters · 2017 · 710 citations
Materials Science, Transition Metal Chalcogenides, Engineering +14
Luminescent zero-dimensional organic metal halide hybrids with near-unity quantum efficiency
Chenkun Zhou, Haoran Lin, Yu Tian et al. · Chemical Science · 2017 · 615 citations · Full text
Stable room-temperature continuous-wave lasing in quasi-2D perovskite films
Chuanjiang Qin, Atula S. D. Sandanayaka, Chenyang Zhao et al. · Nature · 2020 · 600 citations
Photonics, Engineering, Physics +7