首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Preparation, electronic structure, and photoluminescence properties of Eu2+ and Ce3+/Li+-activated alkaline earth silicon nitride MSiN2 (M = Sr, Ba)
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Preparation, electronic structure, and photoluminescence properties of Eu2+ and Ce3+/Li+-activated alkaline earth silicon nitride MSiN2 (M = Sr, Ba)

机译:Eu2 +和Ce3 + / Li +活化的碱土金属氮化硅MSiN2(M = Sr,Ba)的制备,电子结构和光致发光性能

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The electronic structure of alkaline-earth silicon nitride MSiN2 (M = Sr, Ba) was calculated using the CASTEP code. BaSiN2 is calculated to be an intermediate band gap semiconductor with a direct energy gap of about 2.9 eV, while SrSiN2 is an intermediate band gap semiconductor with an indirect energy gap of about 3.0 eV. As expected, the calculated optical band gaps of MSiN2 (M = Ba, Sr) are lower compared to the experimentally determined values (about 4.1 eV for BaSiN2 and 4.2 eV for SrSiN2). In addition, the luminescence properties of Eu2+ and Ce3+ in MSiN2 (M = Sr, Ba) have been studied. Ba1-xEuxSiN2 (0 < x <= 0.1) shows a broad emission band in the wavelength range of 500-750 nm with maxima from about 600 to 630 nm with increaseing Eu2+ concentration, while Sr1-xEuxSiN2 (0 < x <= 0.1) shows a broad emission band in the wavelength range of 550-850 nm with maxima from 670 to 685 nm with increasing Eu2+ concentration. The high absorption and strong excitation bands of M1-xEuxSiN2 (0 < x <= 0.1; M = Sr, Ba) in the wavelength range of 300-530 m are very favorable properties for application as light-emitting-diode conversion phosphors. Ce3+- and Li+- codoped MSiN2 (M = Sr, Ba) exhibits a broad emission band in the wavelength range of 400-700 nm with a peak center at about 485 nm for BaSiN2 and about 535 nm for SrSiN2. A comparison is made between the luminescence properties of Eu2+ and Ce3+ in the Sr versus Ba compounds. The long-wavelength excitation and emission of Eu2+ and Ce3+ ions in the host of MSiN2 (M = Sr, Ba) are attributed to the effect of a high covalency and a large crystal field splitting on the 5d bands of EU2+ and Ce3+ in the nitrogen coordination environment.
机译:使用CASTEP代码计算了碱土金属氮化硅MSiN2(M = Sr,Ba)的电子结构。 BaSiN2被计算为具有大约2.9 eV的直接能隙的中间带隙半导体,而SrSiN2是具有大约3.0 eV的间接能隙的中间带隙半导体。不出所料,与实验确定的值相比,MSiN2的计算出的光学带隙(M = Ba,Sr)更低(BaSiN2约为4.1 eV,SrSiN2约为4.2 eV)。此外,还研究了Eu2 +和Ce3 +在MSiN2(M = Sr,Ba)中的发光特性。 Ba1-xEuxSiN2(0

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