Zhang Nannan, Li Jie, Wang Jianrong, Shi Ruixia, Chen Ling, Zhang Aiyu, Yang Ping
School of Material Science and Engineering, University of Jinan 250022 Jinan China
RSC Adv. 2019 Sep 23;9(52):30045-30051. doi: 10.1039/c9ra06193b.
Calcium magnesium vanadate-europium vanadate powders with a homogeneous distribution have been prepared by a sol-gel method followed by a sintering process. The as-prepared powders show both broadband emission around 520 nm and sharp peak emission at 617 nm under UV light excitation, which are ascribed to the one-electron charge transfer transition in the VO tetrahedra and the typical D → F transition of Eu. Energy transfer occurs between the vanadate and Eu ions. The emission color of the products can be tuned by controlling the Eu concentration and temperature. White light emission can be obtained at the Eu concentration of 15% and at room temperature. The temperature related luminescence properties have been studied for the sample with 15 mol% Eu. The intensity ratio between the broadband emission (due to VO tetrahedra) and the sharp peak emission (due to Eu ions) decreases as the temperature increases in a linear relationship. The relative sensitivity ( ) of this luminescent temperature sensor has been calculated and a maximum has been gained at 455 K with the value equal to 1.83% K.
通过溶胶 - 凝胶法结合烧结工艺制备了具有均匀分布的钒酸钙镁 - 钒酸铕粉末。所制备的粉末在紫外光激发下,在520nm左右呈现宽带发射,在617nm处呈现尖锐的峰值发射,这分别归因于VO四面体中的单电子电荷转移跃迁和Eu的典型D→F跃迁。钒酸盐和Eu离子之间发生能量转移。通过控制Eu浓度和温度可以调节产物的发射颜色。在Eu浓度为15%且室温下可获得白光发射。对含15mol%Eu的样品的温度相关发光特性进行了研究。随着温度升高,宽带发射(归因于VO四面体)和尖锐峰值发射(归因于Eu离子)之间的强度比呈线性下降。计算了该发光温度传感器的相对灵敏度( ),在455K时获得最大值,值为1.83%K 。