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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Molecular Iodine for a General Synthesis of Binary and Ternary Inorganic and Hybrid Organic - Inorganic Iodide Nanocrystals
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Molecular Iodine for a General Synthesis of Binary and Ternary Inorganic and Hybrid Organic - Inorganic Iodide Nanocrystals

机译:二元合成的分子碘和三元无机和杂种有机 - 无机碘化物纳米晶体的一般合成

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摘要

We report the synthesis of various binary and ternary inorganic and hybrid organic-inorganic iodide nano-crystals (NCs) starting from molecular iodine (I-2). The synthesis described herein utilizes a reaction between I, and oleylamine, which results in oleylammonium iodide, an iodide precursor that can be directly used in the preparation of iodide-based NCs. The generality of the synthesis was demonstrated by synthesizing KI, RbI, CsI, AgI, CsPbI3, FAPbI(3), Cs4PbI6, Cs3Bi2I9, FA(3)Bi(2)I(9), and RbAg4I5 NCs. Furthermore, the syntheses are facile and are carried out in vials heated on a hot plate in air. They exhibit not only narrow size distributions, but also, in the case of lead-based perovskites NCs, 70-80% photoluminescence quantum yields. To further prove the high quality of the CsPbI3 and FAPbI(3) perovskite NCs, red and infrared bright light-emitting diodes were fabricated, with external quantum efficiencies (EQEs) exceeding 3%, without following any extensive washing procedures.
机译:我们从分子碘(I-2)开始,从分子碘(I-2)开始合成各种二元和三元无机和杂化有机 - 无机碘化物纳米晶体(NCS)。本文所述的合成利用I和OXylamine之间的反应,这导致碘化物碘化物,可直接用于制备碘化物的NCs的碘前体。通过合成KI,RBI,CSI,AGI,CSPBI3,FAPBI(3),CS4PBI6,CS3BI2I9,FA(3)BI(2)I(9)和RBAG4I5 NCS来证明合成的一般性。此外,合成器是容易的,在加热在空气中的热板上加热的小瓶中进行。它们不仅具有窄尺寸分布,而且在铅基钙钛矿NCS的情况下,30-80%的光致发光量子产率。为了进一步证明高质量的CSPBI3和FAPBI(3)钙钛矿NCS,制造红色和红外明亮的发光二极管,外部量子效率(EQES)超过3%,而无需遵循任何广泛的洗涤程序。

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