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High binding ability ligand controlled formation of CsPbX3 (X = Cl/Br, Br, I) perovskite nanocrystals with high quantum yields and enhanced stability

机译:高结合能力的配体控制CsPbX3(X = Cl / Br,Br,I)钙钛矿纳米晶体的形成,具有高量子产率和增强的稳定性

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CsPbX _(3) NCs with both high photoluminescence quantum yields (PLQYs) and enhanced stability have been obtained by using high binding ability ligands. As a result, the CsPbI _(3) NCs prepared using palmitic acid and oleylamine as ligands have high PLQY (up to 92%), and the PLQYs of CsPbX _(3) perovskite NCs can be sustained for one month with a slight decrease. Impressively, the presence of palmitic acid and stearic acid can dramatically improve the chemical stability of CsPbX _(3) NCs. Importantly, ~(1) H NMR measurements indicate that much more palmitic acid remained on the surface of CsPbX _(3) NCs than oleic acid after purification using solvent, suggesting the higher binding ability of palmitic acid than oleic acid. Finally, the fabricated perovskite NCs were used as luminescent inks and phosphors of white light emitting diodes.
机译:通过使用高结合能力的配体已经获得了具有高光致发光量子产率(PLQYs)和增强的稳定性的CsPbX_(3)NC。结果,使用棕榈酸和油胺作为配体制备的CsPbI_(3)NCs的PLQY高(高达92%),CsPbX _(3)钙钛矿NCs的PLQY可以维持一个月,而略有下降。令人印象深刻的是,棕榈酸和硬脂酸的存在可以大大提高CsPbX_(3)NCs的化学稳定性。重要的是,〜(1)H NMR测量结果表明,使用溶剂纯化后,CsPbX_(3)NCs表面残留的棕榈酸比油酸多得多,表明棕榈酸的结合能力比油酸高。最后,将所制造的钙钛矿型NC用作发光油墨和白色发光二极管的磷光体。

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