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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Complex crystal structure and photoluminescence of Bi3+-doped and Bi3+/Eu3+ co-doped Ca7Mg2Ga6O18
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Complex crystal structure and photoluminescence of Bi3+-doped and Bi3+/Eu3+ co-doped Ca7Mg2Ga6O18

机译:复合晶体结构和Bi3 +的光致发光和Bi3 + / Eu3 +共掺杂Ca7mg2ga6O18

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摘要

Recently, broad-band white-light-emitting using Eu2+, Ce3+, or Bi3+ in multi-sites of a single-phase phosphor have drawn extensive attention due to their potential to realize high-quality indoor lighting. This work reports a novel oxide, Ca7Mg2Ga6O18 (CMG), possessing a complex crystal structure in the space group F432. Rietveld refinements of high-resolution synchrotron X-ray diffraction data were performed to determine the accurate atomic positions and occupancy factors, giving a reasonable composition of Ca7Mg1.91(4)Ga6.09(4)O18. Due to the multiple sites of Ca2+, which are suitable for the doping of Bi3+ activators, CMG is a promising host to achieve broad-band white-light emission. Detailed structural and spectroscopic analyses revealed that the Bi3+-activator shows multiple and site-selective occupancy, which is the origin of the red-shifts in both broad-band excitation and emission spectra upon increasing the Bi3+ content. A series of Bi3+ and Eu3+ codoped phosphors with tunable blue-pink-red emission were prepared due to the Bi3+-to-Eu3+ energy transfer. Due to the distinctive thermal behaviors of Bi3+ and Eu3+ emissions, CMG:Bi3+,Eu3+ is a candidate for optical thermometry.
机译:近年来,利用Eu2+、Ce3+或Bi3+在单相磷光体的多个位置上发射的宽带白光由于其实现高质量室内照明的潜力而受到广泛关注。这项工作报告了一种新型氧化物Ca7Mg2Ga6O18(CMG),在空间群F432中具有复杂的晶体结构。对高分辨率同步辐射X射线衍射数据进行Rietveld细化,以确定准确的原子位置和占据因子,从而给出Ca7Mg1的合理组成。91(4)Ga6。09(4)O18。由于Ca2+的多个位置适合Bi3+激活剂的掺杂,CMG是实现宽带白光发射的有希望的主体。详细的结构和光谱分析表明,Bi3+活化剂显示出多重和位置选择性占据,这是随着Bi3+含量增加,宽带激发和发射光谱红移的起源。利用Bi3+到Eu3+的能量转移,制备了一系列Bi3+和Eu3+共掺荧光粉,其蓝粉红发射可调。由于Bi3+和Eu3+发射的独特热行为,CMG:Bi3+,Eu3+是光学测温的候选者。

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