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1)  self-lighting material
自发光材料
1.
With the wide application of self-lighting materials in security field, the demands for self-lighting signs has even in- creased.
随着自发光材料在安全领域的广泛应用,自发光标识牌的需求量越来越大。
2)  luminescence material
发光材料
1.
Research status and prospect of upconversion luminescence materials and luminescence efficiency
上转换发光材料及发光效率研究及展望
2.
Synthetic methods and application of upconversion luminescence materials
上转换发光材料的合成与应用
3.
The paper presents the research for the rare-earth luminescence materials in recent years,and introduces mainly the characteristics,the compounding method,the application,the production and the prospect of rare-earth luminescence materials in China.
本文概述了稀土发光材料近几年的研究进展,重点介绍稀土发光材料的特点、合成方法和应用,以及我国稀土发光材料生产现状和未来发展前景展望。
3)  luminescent materials
发光材料
1.
Progress in nanostructured luminescent materials;
纳米发光材料的研究进展
2.
Progress of organic electroluminescent materials and devices based on small molecules;
有机小分子电致发光材料及器件的研究进展
4)  luminescence materials
发光材料
1.
The luminescence materials of xSrO·yAl2O3∶Eu2+ were synthesized by microwave radiation method.
在微波场作用下快速合成了铝酸锶系列发光材料xSrO。
2.
1 luminescence materials were prepared by sol-gel method and calcined at different temperatures from 250 to 1000℃.
13+发光材料,并在250~1000℃不同温度下进行煅烧。
3.
The cur- rent status and main problems of this synthesis method of rare earth luminescence materials are introduced in detail.
在对稀土发光材料各主要合成方法进行了简单对比的基础上,介绍了燃烧合成技术及其快速、节能、操作简便等特点,介绍了燃烧合成技术在稀土发光材料合成中的应用现状及存在的主要问题,并展望了今后的发展前景。
5)  luminescent material
发光材料
1.
Study on exciting the luminescent material to glow by β particle;
利用β粒子激活发光材料发光的研究
2.
New progress in organic electroluminescent materials;
有机电致发光材料的新进展
3.
Microwave radiation application on preparation of nano-rare earth luminescent material;
微波在纳米稀土发光材料制备中的应用
6)  phosphor [英]['fɔsfə]  [美]['fɑsfɚ]
发光材料
1.
The red long afterglow phosphorescent material Y_(2)O_(3)∶Eu~(3+),Ca~(2+),Ti~(4+) is fabricated from the method of combustion synthesis,by using urea as the reductant and the nitrates of Y~(3+) as the oxidant.
采用燃烧法合成了新型红色长余辉发光材料Y2O3∶Eu3+,Ca2+,Ti4+。
2.
A red long afterglow phosphorescent material Y_2O_3∶Eu~(3+),Ca~(2+),Ti~(4+) was fabricated by the method of combustion synthesis,using urea as the reductant and yttrium nitrate as the oxidant.
采用燃烧法合成了新型红色长余辉发光材料Y2O3∶Eu3+,C a2+,T i4+。
3.
The long afterglow phosphor CaAl_2O_4∶Eu~(2+),Nd~(3+) was coated by SiO_2 with sol-gel method to resist its degradation in moisture surroundings.
磷石英结构的碱土铝酸盐MAl2O4∶Eu2+,Re(M= Mg, Ca, Sr, Ba; Re= Y, La, Sr, Pr, Nd, Sm,Gd,Tb,Dy等)是典型的长余辉发光材料,已广泛用于人们的日常生活中。
补充资料:场致发光材料(见电致发光材料)


场致发光材料(见电致发光材料)
electroluminescent material

见场致发光材料eleetrolumineseent material 电致发光材料。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条