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1)  F-TiO_2 sol
F-TiO2溶胶
2)  TiO2 sol
TiO2溶胶
1.
A series of doped TiO2 sol were prepared by adding different ions such as Cu2+,Zn2+,I-,and Ag+ respectively,and their bactericidal performances were tested by coated on culture utensil of glass.
在TiO2溶胶中分别引入Cu2+、Zn2+、Ag+及I-等离子,比较上述各种溶胶所制涂层的室内灭菌性能,得出Ag+可显著提高TiO2的室内灭菌性能。
2.
A series of TiO2 sol and poly [-methyl methacrylate-copoly-3-(trimethoxysilyl)propyl methacrylate]-TiO2 hybrid materials was systhesised by Sol-Gel method.
以钛酸四异丙酯(TTIP)、甲基丙烯酸甲酯(MMA)、γ-甲基丙烯酰氧基丙基三甲氧基硅烷(MTMS)为原料,用溶胶-凝胶法制备了一系列不同粒径的TiO2溶胶及不同TiO2含量的聚(甲基丙烯酸甲酯-共聚-γ-甲基丙烯酰氧基丙基三甲氧基硅烷)/TiO2杂化材料,通过动态激光光散射、红外吸收光谱、原子粒显微镜对TiO2溶胶及其杂化材料进行了表征。
3.
Fe3+ doped TiO2 sol was prepared using TiCl4 by hydrolytic precipitation method and was charac- terized by XRD and IR.
以TiCl4为原料,用沉淀法制备了Fe3+掺杂的TiO2溶胶,并利用XRD(X衍射谱)和IR(红外光谱)对掺杂溶胶进行了表征。
3)  TiO_2-SiO_2 sol
TiO2-SiO2溶胶
4)  TiO2 hydrosol
TiO2水溶胶
1.
The TiO2 thin films were prepared from anatase TiO2 hydrosol by the dip coating method,the as-prepared thin films was characterized by TEM and Raman scattering spectrum.
利用所制备的锐钛矿型TiO2水溶胶提拉法成膜,用Raman和TEM分析了TiO2薄膜的晶型和基团结构。
5)  TiO_2 sol
TiO2溶胶
1.
A photocatalytic film-coated fluorescent lamp with good formaldehyde-degrading ability was then fabricated by coating F-TiO_2 sol on the surface of a common fluorescent lamp and drying the film at 120 to 280℃,and the photocatalytic refining activity of the lamp was evaluated by using the air containing formaldehyde as the simulated contaminated air.
以钛酸丁酯为前驱物,采用溶胶-凝胶-水热晶化法制备了锐钛型氟掺杂TiO2(F-TiO2)溶胶;把F-TiO2溶胶涂覆在荧光灯管上,经低温(120~280℃)烘干后,制备了具有光催化净化空气功能荧光灯。
2.
In order to overcome some drawbacks of using nano particles in textile finishing,such as aggregation of the particles and difficulty in dispersion,nano?-TiO_2 sol was prepared by sol-gel method.
针对纺织品整理时直接使用纳米粒子存在易团聚、分散较困难的问题,采用溶胶凝胶法制备纳米TiO2溶胶,再将其制成织物整理剂。
3.
TiO_2 sol was firstly prepared by using the sol-gel method in the lab.
采用溶胶—凝胶法制备TiO2溶胶,并将其对羊毛织物进行整理及染色。
6)  TiO_2-ZnO sol
TiO2-ZnO溶胶
补充资料:CaO-TiO2-SiO2 ceramics
分子式:
CAS号:

性质:在CaO-TiO2-SiO2三元系统中以CaSiO3与TiO2或以CaTiSiO5与CaTiO3为基料的陶瓷材料。其结构特点是两种晶相共存,性能受晶相比例影响。配比可在一定范围内调节。主要原料为碳酸钙、二氧化钛、二氧化硅,加入少量改性添加剂,经配料、磨细、混合、成型、烧成等工序获得制品,也可先用碳酸钙和二氧化硅高温下合成硅酸钙,用碳酸钙、二氧化硅、二氧化钛高温下合成钛硅酸钙后再进行配料、烧成等,以确保两晶相共存。主要介电性能为:介电常数80~110,介质损耗角正切值(0.8~2.5)×10-4,介电常数温度系数(-450~+550)×10-6/℃。抗电温度(45~55)kV/mm,电阻率(1011~1012)Ω·cm。主要用作温度补偿型陶瓷电容器瓷料。

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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