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首页> 外文期刊>Nanoscale >Co-doping of tellurium with bismuth enhances stability and photoluminescence quantum yield of Cs2AgInCl6 double perovskite nanocrystals
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Co-doping of tellurium with bismuth enhances stability and photoluminescence quantum yield of Cs2AgInCl6 double perovskite nanocrystals

机译:碲与铋共掺杂可提高Cs2AgInCl6双钙钛矿纳米晶的稳定性和光致发光量子产率

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摘要

The co-doping of double perovskites is a useful approach in terms of improving their stability and photoluminescence quantum yield. Herein, Bi3+ and Te4+ cations have been co-doped into Cs2AgInCl6 nanocrystals. Doping with Te4+ cations promotes radiative recombination of self-trapped excitons due to increased defect formation energies of silver and indium vacancies, according to experimental and theoretical results. When used in excess, the TeO2 precursor would generate residual TeO2, Te2O3Cl2, R2TeO, or all three of them, which confined undesired chlorine ions on oxygen vacancies to counteract the pull from the Cs2AgInCl6 host, resulting in improved coordination with surface oleic acid ligands. As a result, 1% Bi and 8% Te co-doped Cs2AgInCl6 nanocrystals reach a high photoluminescence quantum yield of 34% and show an improved stability, maintaining over 70% of their original emission intensity after storage for more than 1 month. These findings are important in the context of producing high-performance properly doped double perovskite nanocrystals for optoelectronic applications.
机译:提出一种双钙钛矿是一个有用的方法改善其稳定性与光致发光量子产率。和Te4 +阳离子co-doped成Cs2AgInCl6纳米晶体。促进自己捕捉的辐射复合激子由于增加缺陷的形成能量银、铟的空缺,根据实验和理论结果。会产生残余TeO2, Te2O3Cl2、R2TeO或他们三个,在不受欢迎的氯离子对氧空缺来抵消拉从Cs2AgInCl6主机,导致改善配合表面油酸配体。Cs2AgInCl6纳米晶体高光致发光量子产率34%,显示一种改进的稳定,保持超过70%的原来的排放强度后存储超过1个月。重要的在生产环境中高性能适当掺杂钙钛矿的两倍为光电应用纳米晶体。

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