1) Tm3+
Tm3+
1.
The luminescent properties of the samples are investigated and up-conversion luminescence of Er3+,Ho3+ and Tm3++ doped Sr2CeO4 phosphors are observed.
研究了样品的荧光性质,并观察到Er3+,Ho3+,Tm3++掺杂的Sr2CeO4材料的上转换发光现象。
2.
Pr3+-,Tm3++-doped fluorogallate glasses were fabricated and the absorption spectrum of these glasses were studied.
制备了掺Pr3+和Tm3++的氟化镓铟玻璃,研究了玻璃的吸收光谱。
3.
Tm3++ doped GICZPS glass: 20GaF3-15InF3-20CdF2-15ZnF2-18PbF2-10SnF2-2TmF3 was produced.
制备了掺Tm3++离子GICZPS玻璃:20GaF3-15InF3-20CdF2-15ZnF2-18PbF2-10SnF2- 2TmF3,用Judd-Ofelt理论计算了玻璃的光学参数,研究了玻璃的发光性质,并探讨了其发光 机理。
2) Tm3+/Yb3+
Tm3+/Yb3+
1.
Tm3++/Yb3+ co-doped in fluoride-oxide are synthesized from TeO2,AlF3,PbF2,NaF,Tm2O3 and Yb2O3.
制备了稀土Tm3+/Yb3+共掺杂氟氧化物上转换发光材料(60TeO2-10A lF3-10PbF2-10NaF-2Tm2O3-8Yb2O3),在980nm红外光泵浦激发下,测量了样品的吸收谱、上转换荧光发射谱和上转换发光强度与激光泵浦功率的对数关系。
2.
The TiBa glass microspheres co-doped with Tm3++/Yb3+ for morphology-dependent resonances of upconversion emission were designed and fabricated.
为实现基于微球谐振腔的光上转换,本文设计制作了Tm3+/Yb3+共掺杂的TiBa玻璃微球。
3) Tm3+:Ho3+
Tm3+:Ho3+
1.
The system of Tm3++: Ho3+ co-doped fibre pumped by 1565 nm laser was considered as the best choice for producing 2μm laser through analysis.
综述了单掺Tm3+、单掺Ho3+和Tm3+:Ho3+共掺2μm光纤激光器的发展状况,分析提出1565nm抽运Tm3+:Ho3+共掺光纤激光器系统是产生2μm激光的较佳选择。
4) Tm3+ and Tb3+
Tin~(3+)和Tb~(3+)离子
5) NaGdF4:Tm3+
NaGdF4:Tm3+
1.
The possibility to obtain two blue photons under excitation of one VUV photon in NaGdF4∶Tm3++,Dy3+ has been investigated by means of spectroscopic techniques,based on quantum cutting principle.
基于量子剪裁基本原理,通过光谱技术研究NaGdF4∶Tm3+,Dy3+在一个真空紫外光子激发下获得两个蓝色光子的可能性。
6) Tm3+ ion
Tm~(3+)离子
参考词条
Tm3+:Ho3+:YVO4
Tm3+-doped fiber
Er3+/Tm3+codoped
Tm3+/Ho3+ co-doped
Tm3+/Yb3 + codoped
Tm3+-doped germanate glasses
doped withHo3+ /Tm3+
Tm3+-Yb3+ codoped
double-clad Tm3+-doped fiber
Tm3+ and Ho3+-doped germanate glasses
Y(P,V)O4 Tm3+
rare-earth ion Tm3+ and Yb3+
Tm3+:Ba3Gd2(BO3)4 crystal
Tm3+ :NaGd(WO4)2 crystal
Tm3+:Ho3+ co-poded silica optical fiber
红外比色测温/红外测温
钛氧酞菁
补充资料:antistatic agent TM
分子式:
分子量:
CAS号:
性质:淡黄色油状液体,易溶于水,具吸潮性。可与阳离子型、非离子型表面活性剂混合使用。作为聚丙烯腈、聚酯、聚酰胺等合成纤维的优良静电消除剂、聚酯、聚酰胺等合成纤维的优良静电消除剂。能降低电阻106欧左右。是聚酯、聚丙烯腈等合成纤维纺丝油剂的重要组分。由三乙醇胺加硫酸二甲酯进行季铵化制得。
分子量:
CAS号:
性质:淡黄色油状液体,易溶于水,具吸潮性。可与阳离子型、非离子型表面活性剂混合使用。作为聚丙烯腈、聚酯、聚酰胺等合成纤维的优良静电消除剂、聚酯、聚酰胺等合成纤维的优良静电消除剂。能降低电阻106欧左右。是聚酯、聚丙烯腈等合成纤维纺丝油剂的重要组分。由三乙醇胺加硫酸二甲酯进行季铵化制得。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。