Ci Zhipeng, Que Meidan, Shi Yurong, Zhu Ge, Wang Yuhua
Department of Materials Science, School of Physical Science and Technology, Lanzhou University , Lanzhou 730000, China.
Inorg Chem. 2014 Feb 17;53(4):2195-9. doi: 10.1021/ic402859s. Epub 2014 Jan 28.
In this Study, Mg(2+) and Ba(2+) act to enhance the maximum emission of Sr2.97SiO5:0.03Eu(2+) significantly and redshift the emission band to the orange-red region in Sr(2.97-x-y)Mg(x)Ba(y)SiO5:0.03Eu(2+). Size mismatch between the host and the doped cations tunes the photoluminescence spectra shift systematically. A slight blue shift when increasing the amount of Mg(2+) occurs in the Sr(2.97-x)Eu0.03Mg(x)SiO5 lattices, and a rapid red shift occurs when Ba(2+) is codoped in the Sr(2.57-y)Eu0.03Mg0.4Ba(y)SiO5 lattices. The emission spectra were tuned from 585 to 601 nm by changing the concentration of Ba(2+). Accordingly, we propose the underlying mechanisms of the changes in the photoluminescence properties by adjusting the cation composition of phosphors. The influence of the size mismatch on the thermal quenching is also observed. This mechanism could be widely applied to oxide materials and could be useful in tuning the photoluminescence properties, which are sensitive to local coordination environment. The emission bands of Sr(2.97-x-y)Eu0.03Mg(x)Ba(y)SiO5 show the blue shift with increasing temperature, which could be described in terms of back tunneling of the excited electrons from the low-energy excited state to the high-energy excited state. Thus, the Sr(2.97-x-y)Eu0.03Mg(x)Ba(y)SiO5 phosphors could have potential applications in the daylight LEDs or warm white LEDs.
在本研究中,Mg(2+)和Ba(2+)显著增强了Sr2.97SiO5:0.03Eu(2+)的最大发射,并使Sr(2.97 - x - y)Mg(x)Ba(y)SiO5:0.03Eu(2+)的发射带红移至橙红色区域。主体与掺杂阳离子之间的尺寸失配系统地调节了光致发光光谱的位移。在Sr(2.97 - x)Eu0.03Mg(x)SiO5晶格中,随着Mg(2+)含量增加出现轻微蓝移,而在Sr(2.57 - y)Eu0.03Mg0.4Ba(y)SiO5晶格中,当共掺杂Ba(2+)时出现快速红移。通过改变Ba(2+)的浓度,发射光谱从585 nm调至601 nm。据此,我们提出了通过调整磷光体阳离子组成来改变光致发光性能的潜在机制。还观察到尺寸失配对热猝灭的影响。该机制可广泛应用于氧化物材料,有助于调节对局部配位环境敏感的光致发光性能。Sr(2.97 - x - y)Eu0.03Mg(x)Ba(y)SiO5的发射带随温度升高而蓝移,这可以用激发电子从低能激发态到高能激发态的反向隧穿来解释。因此,Sr(2.97 - x - y)Eu0.03Mg(x)Ba(y)SiO5磷光体在日光LED或暖白光LED中可能具有潜在应用。