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长余辉发光材料的紫外-可见反射光谱测定
引用本文:张玉奇,黄佳木,李治霞. 长余辉发光材料的紫外-可见反射光谱测定[J]. 光谱学与光谱分析, 2002, 22(6): 898-901
作者姓名:张玉奇  黄佳木  李治霞
作者单位:1. 重庆大学材料科学与工程学院建材系测试中心,重庆,400045
2. 重庆大学材料科学与工程学院建材系,重庆,400045
摘    要:用“湿法”制备了长余辉发光材料,原料通过水溶液液相分子水平上的均匀混合,利用金属硝酸盐和有机还原剂在较低的温度下发生氧化还原燃烧反应,一步快速生成产品。加热起燃温度低至500℃,反应时间短,所制得的产品成份均匀,晶粒小,外观呈蓬松状态,易研磨粉碎,粉体表观密度小。以紫外-可见分光光度计测定分析了所制备样品在蓄光前后的反射光谱特征并作了探讨。结果表明,除表观密度外,“显法”与“干法”制备的长余辉发光材料的主要性质相同,紫外-可见反射光谱可以准确描述长余辉发光材料的紫外-可见光谱性能特征。

关 键 词:测定 长余辉发光材料 光谱性能 紫外-可见反射光谱 铝酸锶 发光机理
文章编号:1000-0593(2002)06-0898-04
修稿时间:2001-12-21

Determination of UV-Vis Reflective Spectra of Long After-glow Phosphorescent Material
Yu-qi Zhang,Jia-mu Huang,Zhi-xia Li. Determination of UV-Vis Reflective Spectra of Long After-glow Phosphorescent Material[J]. Spectroscopy and Spectral Analysis, 2002, 22(6): 898-901
Authors:Yu-qi Zhang  Jia-mu Huang  Zhi-xia Li
Affiliation:Analysis and Testing Center, College of Material Science and Engineering, Chongqing University, Chongqing 400045, China.
Abstract:The long after-glow phosphorescent materials were fabricated by using "wet" method. The component materials were dissolved in water solution so that their homogeneous mix was reached at molecular level. The approach that metal nitrates and organic reductants would react spontaneously and get into combustion at a moderately low ambient temperature through oxido-reduction reaction was introduced into our fabrication of long after-glow phosphorescent samples. The ambient temperature to generate the combustion could go down to 500 degrees C, and the reaction completed within 1-2 minutes, producing a fluffy resultant with small crystal structure and even composition, which is easy to grind, and with low bulk density for its powder. UV-Vis reflective spectrophotometer was used to determine and analyze the characteristics of the sample before and after its absorption of light. The result shows that the properties of the samples fabricated from both "wet" and "dry" techniques are similar except their bulk densities, and the UV-Vis reflective spectrum was able to clearly describe the spectral characteristics of long after-glow phosphorescent materials.
Keywords:Long after glow phosphorescent material  UV Vis reflective spectrum  Light storage
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