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On direct synthesis of high quality APbX3 (A = Cs+, MA+ and FA+; X = Cl−, Br− and I−) nanocrystals following a generic approach

机译:直接合成高质量的APbX3 (=马c + +和FA +;纳米晶体后一个通用的方法

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摘要

Direct synthesis of APbX3 [A = Cs+, methylammonium (MA+) or formamidinium (FA+) and X = Cl−, Br− or I−] perovskite nanocrystals (NCs) following a generic approach is a challenging task even today. Motivated by our recent success in obtaining directly high-quality red/NIR-emitting APbI3 NCs employing 1,3-diiodo-5,5-dimethylhydantoin (DIDMH) as an iodide precursor, we explore here whether violet/green-emitting APbCl3 and APbBr3 NCs can also be obtained using the chloro- and bromo-analog of DIDMH keeping in mind that a positive outcome will provide the generic protocol for direct synthesis of all APbX3 NCs using similar halide precursors. It is shown that green-emitting APbBr3 NCs with near-unity PLQY and violet-emitting CsPbCl3 NCs with an impressive PLQY of ∼70%, mixed-halide NCs, CsPb(Cl/Br)3 and CsPb(Br/I)3, emitting in the blue and yellow-orange region with PLQYs of 87–95% and 68–98%, respectively can indeed be obtained employing the bromo- and chloro-analog of DIDMH. These NCs exhibit remarkable stability under different conditions including the polar environment. Femtosecond pump–probe studies show no ultrafast carrier trapping in these systems. The key elements of the halide precursors that facilitated the synthesis and the factors contributing to the excellent characteristics of the NCs are determined by careful analysis of the data. The results are of great significance because a direct method of obtaining highly luminescent and stable APbX3 NCs (except violet-emitting hybrid NCs) is eventually identified and the work provides valuable insight into the selection of appropriate halide precursors for the development of superior systems.
机译:直接合成APbX3 [= c + methylammonium马(+)或formamidinium (FA +)和X = Cl−Br−或我−)钙钛矿纳米晶体(nc)之后通用的方法是一个具有挑战性的任务今天。直接获得高质量的红/ NIR-emitting1、3-diiodo-5 5-dimethylhydantoin (DIDMH)作为一个碘的前兆,我们探讨是否在这里紫色/ green-emitting APbCl3和APbBr3 nc使用氯,也是获得bromo-analog DIDMH记住的积极的结果将提供通用协议的直接合成APbX3 nc使用类似的卤化物前兆。green-emitting APbBr3 nc与near-unity PLQY与一个和violet-emitting CsPbCl3 nc令人印象深刻的PLQY∼70%,mixed-halide nc,乳腺叶状囊肉瘤(Cl / Br) 3和乳腺叶状囊肉瘤(Br / I) 3,散发出的蓝色和橘黄地区PLQYs分别为87 - 95%和68 - 98%确实可以采用溴和chloro-analog获得DIDMH。在不同条件下包括极地环境。在这些系统没有超速载波捕获。卤化物前体的关键元素促进合成和因素导致的优良特性nc是由仔细的分析数据。因为直接获得高度的方法发光稳定APbX3 nc(除了最终violet-emitting混合nc)识别和工作提供了有价值的洞察力选择适当的卤化物前体的发展优势系统。

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  • 来源
    《Nanoscale》 |2022年第26期|9349-9358|共10页
  • 作者

    Das Somnath; Samanta Anunay;

  • 作者单位

    University of Hyderabad;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 Online;
  • 关键词

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