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首页> 外文期刊>Nanoscale >Self-doping induced oxygen vacancies and lattice strains for synergetic enhanced upconversion luminescence of Er3+ ions in 2D BiOCl nanosheets
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Self-doping induced oxygen vacancies and lattice strains for synergetic enhanced upconversion luminescence of Er3+ ions in 2D BiOCl nanosheets

机译:自掺杂诱导氧空位和晶格应变在二维BiOCl纳米片中协同增强Er3+离子的上转换发光

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Rare earth (RE) ions combined with two-dimensional (2D) semiconductors can exhibit unexpected optical properties. However, fluorescence quenching has always been inevitable due to defects associated with the synthesis and doping of 2D materials. In this work, we reported an efficient upconversion (UC) enhancement of Er3+ doped BiOCl nanosheets, utilizing a defect engineering strategy conversely rather than eliminating defects. Experiments and theoretical calculations provide evidence that oxygen vacancies (OVs) and lattice strain are simultaneously formed in the BiOCl:Er3+ nanosheets through self-doping of Cl− ions. Under 980 nm excitation, samples doped with 300 mol Cl− ions exhibit the best luminescent emission, and the green and red UC emissions are enhanced 3.5 and 15 times, respectively. We showed that the OVs in the 2D semiconductor can act as energy bridges to transfer charges to the Er3+ energy level, enriching the electron population at the excited levels; while, the lattice strain enhances the energy transfer and charge accumulation, which synergistically enhance the UC luminescence. This research provides a new insight into the development of defect engineering for UC PL in 2D nanomaterials.
机译:稀土(RE)离子与二维相结合(2 d)半导体可以表现出意想不到的光学性质。淬火总是不可避免的因缺陷与合成和兴奋剂有关的二维材料。有效的上转换(UC)增强Er3 +掺杂BiOCl nanosheets,利用一个缺陷相反,而不是工程策略消除缺陷。计算提供证据表明氧气空缺(ov)和晶格应变同时形成BiOCl: Er3 +nanosheets通过self-doping Cl−离子。980 nm励磁,掺杂样品300摩尔%Cl−离子表现出最好的荧光发射,和绿色和红色UC排放增加分别为3.5和15倍。在2 d ov半导体可以作为能源桥梁将费用转移到Er3 +能量水平,丰富的电子数量兴奋的水平;提高能量转移和电荷积累,表现为协同作用增强加州大学发光。了解缺陷的发展工程UC PL在二维纳米材料。

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