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Defects and photoluminescence of Ni2+ and Mn2+-doped sol-gel SiO2 glass

机译:掺杂Ni2 +和Mn2 +的溶胶-凝胶SiO2玻璃的缺陷和光致发光

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SiO2 glass doped with Ni2+ and Mn2+ has been prepared by the sol-gel process. Very strong visible light (its fluorescence efficiency is about 4 times of that of undoped sol-gel SiO2 glass and about 160 times of that of ZnS nanocrystallites) from the SiO2 glass doped with Ni2+ and Mn2+ has been observed. The emission wavelength of Ni2+-doped, Mn2+-doped, and undoped glass samples is about 450 nm. However, the co-doping of Ni2+ and Mn2+ shifts the emission wavelength to 420 nm. The sol-gel SiO2 glass is a porous phosphor material. Very strong photoluminescence of the sol-gel SiO2 glass mainly comes from structural defects. Because the doped samples contain more Si dangling bonds, nonbridging oxygen, and oxygen vacancy in its structure and surface defects inside the nanometer-scale hole in the sol-gel SiO2 glass than undoped glass sample, the fluorescence efficiency of doped samples has been remarkably increased. Because the doped ions affect the band gap structure of the host materials, the emission wavelength of the co-doped samples is different from that of Ni2+- and Mn2+-doped samples. Because the emission wavelength of Ni2+ and Mn2+ luminescent centers in the sol-gel silica glass is almost the same as that of undoped sample, the fluorescence intensities of Ni2+- and Mn2+-doped samples are higher than those of the co-doped samples. (C) 2001 Academic Press. [References: 21]
机译:通过溶胶-凝胶法制备了掺杂有Ni2 +和Mn2 +的SiO2玻璃。从掺有Ni2 +和Mn2 +的SiO2玻璃中观察到非常强的可见光(其荧光效率约为未掺杂的sol-gel SiO2玻璃的4倍,约为ZnS纳米微晶的160倍)。掺杂Ni 2+,Mn 2+掺杂和未掺杂的玻璃样品的发射波长约为450 nm。但是,Ni2 +和Mn2 +的共掺杂将发射波长移至420 nm。溶胶-凝胶SiO2玻璃是多孔磷光体材料。溶胶-凝胶SiO2玻璃的非常强的光致发光主要来自结构缺陷。由于掺杂样品比未掺杂玻璃样品包含更多的Si悬空键,非桥连氧以及其结构和溶胶-凝胶SiO2玻璃纳米级孔内的表面缺陷中的氧空位,因此掺杂样品的荧光效率得到了显着提高。 。由于掺杂离子会影响基质材料的带隙结构,因此共掺杂样品的发射波长与Ni2 +和Mn2 +样品的发射波长不同。由于溶胶-凝胶石英玻璃中Ni2 +和Mn2 +发光中心的发射波长与未掺杂样品的发射波长几乎相同,因此Ni2 +和Mn2 +掺杂的样品的荧光强度高于共掺杂样品的荧光强度。 (C)2001学术出版社。 [参考:21]

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