首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Dual phosphorescence from the organic and inorganic moieties of 1D hybrid perovskites of the PbnBr4n+2 series (n '=2, 3, 4, 5)
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Dual phosphorescence from the organic and inorganic moieties of 1D hybrid perovskites of the PbnBr4n+2 series (n '=2, 3, 4, 5)

机译:来自PBNBR4N + 2系列1D杂交钙酸盐的有机和无机部分的双磷光(N'= 2,3,4,5)

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摘要

The diprotonated lysine - 2,6-diamino-hexanoic acid - (H(2)Lys(2+)) and ornithine - 2,5-diamino-pentanoic acid - (H(2)Orn(2+)) dications in the presence of lead bromide afford four novel hybrid perovskites: (dl-H(2)Lys)(3)[Pb2Br10]3H(2)O (1), (l-H(2)Orn)(4)[Pb3Br14]2H(2)O (2), (l-H(2)Lys)(6)[Pb4Br18]2Br2H(2)O (3) and (dl-H(2)Lys)(6)[Pb5Br22]4H(2)O (4). In all structures 1-4, the inorganic frameworks are 1D perovskite ribbons belonging to the PbnBr4n+2 series, n corresponding to the number of octahedra of the ribbon width. The n = 3, n = 4 and n = 5 networks enlarge the very rare cases of such perovskite anions. The crystallized powders of all the compounds display bright orange broad-band emission with efficiencies up to 28% and room temperature phosphorescence in the ms range promoted by energy transfer processes from the inorganic to the organic moieties. In the films the lower efficiency of energy transfer enhances the relative intensity of the blue emission component, providing white light emission at room temperature. At 84 K additional narrow blue phosphorescence from the inorganic moieties, with a lifetime of 19 ms, provides unprecedent dual phosphorescence emission.
机译:双突出的赖氨酸 - 2,6-二氨基 - 六烷基酸 - (H(2)Lys(2+))和鸟氨酸 - 2,5-二氨基 - 戊酸 - (H(2)ORN(2+))脱脂剂铅溴的存在提供四种新型杂交钙酸盐:(DL-H(2)Lys)(3)[PB2BR10] 3H(2)O(1),(LH(2)ORN)(4)[PB3BR14] 2H(2 )O(2),(LH(2)Lys)(6)[PB4BR18] 2BR2H(2)O(3)和(DL-H(2)Lys)(6)[PB5BR22] 4H(2)O(4 )。在所有结构1-4中,无机框架是属于PBNBR4N + 2系列的1D钙钛矿带,N对应于带状宽度的八面体的数量。 n = 3,n = 4,n = 5网络放大了这种钙钛矿阴离子的非常罕见的情况。所有化合物的结晶粉末显示出明亮的橙色宽带发射,其效率高达28%,并且在MS系列中,通过从无机到有机部分的能量转移方法促进的MS范围内的室温磷光。在薄膜中,能量转移的效率较低,增强了蓝色发射组分的相对强度,在室温下提供白光发光。在84 k额外的窄蓝色磷光从无机部分,寿命为19毫秒,提供前所未有的双磷光发射。

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