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1)  water glass/hydrochloric acid composition
水玻璃/盐酸体系
2)  water-glass ename
水玻璃搪瓷;硅酸盐颜料
3)  bismuth glasses
铋酸盐玻璃
1.
Spectroscopic properties of Er~(3+) and Er~(3+)/Yb~(3+) co-doped bismuth glasses;
Er~(3+)及Er~(3+)/Yb~(3+)共掺铋酸盐玻璃光谱性质研究
4)  silicate glass
硅酸盐玻璃
1.
Study of IR radiation spectrum of the silicate glass and its melt structure;
硅酸盐玻璃及其熔体结构的红外辐射光谱研究
2.
Electric field-assisted diffusion of Ag~+ into silicate glass and the growth of silver nano-crystals
Ag~+在硅酸盐玻璃中电场诱导扩散与纳米晶析出
3.
The silicate glasses doped with Tb3+, Dy3+ respectiely and co-doped with Tb3+ and Dy3+ were synthesized by high-tempe- rature melting method.
根据Dy3+和Tb3+掺杂硅酸盐玻璃的激发和发射光谱、发光衰减时间谱等特性,研究了Dy3+与Tb3+之间的能量传递关系。
5)  phosphate glass
磷酸盐玻璃
1.
Judd-Ofelt parameterization analysis of Tm~(3+) doped phosphate glasses;
用Judd-Ofelt理论计算Tm~(3+)掺杂的磷酸盐玻璃光谱参数
2.
Gain summarization of Er~(3+)/Yb~(3+) co-doped phosphate glass fiber amplifiers;
Er~(3+)/Yb_(3+)共掺磷酸盐玻璃光纤放大器的增益综述
6)  Borate glass
硼酸盐玻璃
1.
The effect of varying amount of boron trioxide and other higher valence metal ions on physicochemical properties of the glass by taking an example of Yb3+,Er3 doped phosphorous borate glass.
以Yb3+、Er3+掺杂的含磷硼酸盐玻璃材料为研究对象,分析了改变B2O3的含量以及不同高价离子对玻璃的物化性质的影响。
2.
Luminescent characteristics of borate glasses doped with rare earth ions (such as Pr(3+),Sm(3+), Eu(3+),Tb(3+),Dy(3+),Er(3+) and Tm(3+)) whose emission spectra are situated in the visible region are systematically investigated by means of fluorescence spectra and IR spectra.
应用荧光光谱、红外振动光谱等研究了在可见光区发光的Pr(3+),Sm(3+),Eu(3+),Tb(3+),Dy(3+),Er(3+)和Tm(3+)等镧系稀土离子在硼酸盐玻璃中的发光行为,系统地分析了稀土离子在硼酸盐玻璃基质中的激发谱和发光谱特性。
3.
A number of aluminum-borate glasses have been developed for producing GRIN glasses by ion-exchange,Both positive and negative axial gradient indeces were obtained in the glasses by exchange of Li ̄(+) for Na ̄(+) and Na ̄(+) for Li ̄(+) respectively.
研制了几种由离子交换形成梯度折射率的铝-硼酸盐玻璃。
补充资料:钾钠水玻璃
分子式:mNa2O·nK2O·xSiO2 
CAS号:

性质:又称钾钠水玻璃(potassium sodium water glass)。略带黄或黄绿色的黏稠液体。具有硅酸钾和硅酸钠共有的性质。在应用上弥补了单独使用一种时性能的不足。如一定组成的硅酸钾钠其抗水能力优于其单独的任何一种。由碳酸钾、碳酸钠和硅砂按一定比例混合熔融反应,经冷却,溶解,澄清,浓缩制得。也可采用由氢氧化钠、氢氧化钾和硅砂进行压热反应,经浓缩制得。也可采用白炭黑、苛性钾、硅酸钠为原料来制取。主要用作黏结剂,洗涤剂,除油污助剂等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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