Abstract
The mechanochemical route is a facile and fast way and has received much attention for developing versatile advanced functional materials. Herein, we reported a mechanochemical synthesis for incorporating divalent manganese ions (Mn II ) into a two-dimensional (2D) hybrid perovskite (C 4 H 9 NH 3 ) 2 PbCl 4 . The mild external stimuli originating from the grinding at room temperature enabled the formation of MnII-doped 2D hybrid perovskites, and rapidly changed the luminescence characteristics. The photoluminescence analyses show that the violet and orange emissions are attributed to (C 4 H 9 NH 3 ) 2 Pb 1–x Mn x Cl 4 band-edge emission and the T 1 → 6 A 1 transition of Mn 2+ resulting from an efficient energy transfer process, respectively. Site preference and distribution of the doped Mn 2+ cations on the locations of Pb 2+ were analyzed. The formation energy calculated by the density functional theory (DFT) indicates that the Mn 2+ ions can rapidly enter the crystal lattice due to the unique 2D crystal structure of the hybrid perovskite. Such a case of mechanochemical synthesis for the 2D hybrid perovskite motivates many novel emerging materials and the related applications.
| Translated title of the contribution | Mn II 掺杂二维杂化钙钛矿(C 4 H 9 NH 3 ) 2 PbCl 4 的机械化学合成及其发光性能研究 |
|---|---|
| Original language | English |
| Pages (from-to) | 1013-1022 |
| Number of pages | 10 |
| Journal | Science China Materials |
| Volume | 62 |
| Issue number | 7 |
| DOIs | |
| State | Published - 1 Jul 2019 |
Keywords
- 2D hybrid perovskite
- Mn-doping
- luminescence
- mechanochemical
- phosphor
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