红移
光致发光
钙钛矿(结构)
纳米晶
材料科学
兴奋剂
谱线
荧光
光化学
蓝移
发射光谱
化学物理
离子
锗酸盐
分子物理学
重组
自发辐射
红移
金属
密度泛函理论
受激发射
光电子学
激子
原子电子跃迁
塞尔效应
结合能
作者
Yunfeng Wang,Chenenze Jiang,Yunru Chen,Xing Hu,Tingfu Pang,Huan Tang,Shuanglai Liu,Manjing Wang,Xiaosheng Tang,Wenxia Zhang
摘要
Transition metal doping in perovskite nanocrystals is an important means to regulate their photophysical properties. In particular, the underlying concentration effect and optical process deserve further study. Herein, we investigate the phenomenon of continuous redshift in manganese-doped perovskite nanocrystals' spectra with the Mn2+ doping concentration. The results from experiment combined with density functional theory show that the spectral redshift primarily results from the heightened emission of Mn2+–Mn2+ dimers and the reduced contribution of isolated Mn2+ as the concentration of Mn2+ increases. What is more, appropriate introduction of Cu2+ ions with a Cu to Pb molar ratio of 1:1 can increase the formation energy of Mn-related defects, facilitate the formation of Mn2+–Mn2+ dimers, and simultaneously inhibit the non-radiative recombination process caused by the close spacing of Mn2+ ions, thereby avoiding the occurrence of fluorescence quenching, thus the redshift of spectra is significant in the presence of Cu2+ ion. These findings enhance our comprehension of the photoluminescence mechanism related to spectral redshift in nanocrystals doped with transition metals.
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