Tiwari Geetanjali, Brahme Nameeta, Sharma R, Bisen D P, Sao Sanjay Kumar, Singh Manisha
School of Studies in Physics and Astrophysics, Pt. Ravishankar Shukla University Raipur, Chhattisgarh, India.
Department of Physics, Arts and Commerce Girls College, Devendra Nagar, Raipur, 492001, Chhattisgarh, India.
Luminescence. 2016 May;31(3):793-801. doi: 10.1002/bio.3025. Epub 2015 Sep 23.
Ce(3+)-doped calcium aluminosilicate phosphor was prepared by a combustion-assisted method at an initiating temperature of 600°C. Structural characterization was carried out using X-ray diffraction (XRD) and scanning electron microscopy (SEM). The absorption spectra of Ca2Al2SiO7:Ce(3+) showed an absorption edge at 230 nm. The optical characterization of Ca2Al2SiO7:Ce(3+) phosphor was investigated in a fracto-mechanoluminescence (FML) and thermoluminescence (TL) study. The peak of ML intensity increased as the height of impact of the moving piston increased. The TL intensity of Ca2Al2SiO7:Ce(3+) was recorded for different exposure times of UV and γ-irradiation and it was observed that TL intensity was maximum for a UV irradiation time of 30 min and for a γ-dose of 1180 Gy. The TL intensity had three peaks for UV irradiation at temperatures 82°C, 125°C and 203°C. Also the TL intensity had a single peak at 152°C for γ-irradiation. The TL and ML emission spectra of Ca2Al2SiO7:Ce(3+) phosphor showed maximum emission at 400 nm. The possible mechanisms involved in the TL and ML processes of the Ca2Al2SiO7:Ce(3+) phosphor are also explained.
采用燃烧辅助法在600°C的起始温度下制备了铈(Ce³⁺)掺杂的钙铝硅酸盐荧光粉。使用X射线衍射(XRD)和扫描电子显微镜(SEM)进行结构表征。Ca₂Al₂SiO₇:Ce³⁺的吸收光谱在230 nm处显示出吸收边。在断裂机械发光(FML)和热释光(TL)研究中对Ca₂Al₂SiO₇:Ce³⁺荧光粉进行了光学表征。随着移动活塞撞击高度的增加,机械发光强度峰值增大。记录了Ca₂Al₂SiO₇:Ce³⁺在不同紫外线和γ射线辐照时间下的热释光强度,观察到紫外线辐照30分钟和γ剂量为1180 Gy时热释光强度最大。在82°C、125°C和203°C温度下,紫外线辐照的热释光强度有三个峰值。γ射线辐照时,热释光强度在152°C有一个单峰。Ca₂Al₂SiO₇:Ce³⁺荧光粉的热释光和机械发光发射光谱在400 nm处显示出最大发射。还解释了Ca₂Al₂SiO₇:Ce³⁺荧光粉热释光和机械发光过程中可能涉及的机制。