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1)  Na2Ti3O7 whisker
钛酸钠晶须
1.
A new carrier of catalyst-Na2Ti3O7 whisker was selected and TiO2Na2Ti3O7 was prepared by sol-gel method,then complex photocatalyzer H3PW12O40/TiO2/Na2Ti3O7 was prepared by dipping way.
钛酸钠晶须为载体,采用溶胶—凝胶法制备TiO2/Na2Ti3O7,用浸渍法制得H3PW12O40修饰的复合光催化剂H3PW12O40/TiO2/Na2Ti3O7。
2)  sodium trititanate whisker
三钛酸钠晶须
1.
Study on the adsorption behavior of Cu(Ⅱ),Co(Ⅱ)and Pb(Ⅱ)ions on sodium trititanate whisker;
钛酸钠晶须对Cu(Ⅱ),Co(Ⅱ),Pb(Ⅱ)的吸附行为研究
2.
Study on the separation and concentration of trace lead with sodium trititanate whisker;
钛酸钠晶须分离富集痕量铅的研究
3.
Solid-phase extraction techniques for chromium(Ⅲ) adsorption on sodium trititanate whisker with flame atomic absorption spectrometry;
固相萃取-火焰原子吸收光谱法分析三钛酸钠晶须对铬(Ⅲ)的吸附行为
3)  potassium titanate whiskers
钛酸钾晶须
1.
Preparation and property of SiO_2-potassium titanate whiskers composite particles;
SiO_2钛酸钾晶须复合微粒的制备及性质研究
2.
Moisture absorbing ability and tribology capability of potassium titanate whiskers reinforced MC nylon;
钛酸钾晶须改性MC尼龙的吸湿行为及摩擦学特性
3.
Evaluate the effect of different heat-cure time on the flexural strength of the resins reinforced by potassium titanate whiskers
热处理时间对钛酸钾晶须增强牙用复合树脂的抗弯强度的影响
4)  potassium titanate whisker
钛酸钾晶须
1.
Preparation of PP vehicle materials Co-reinforced by the natural fiber and potassium titanate whisker;
苎麻纤维和钛酸钾晶须混杂增强聚丙稀车用材料的研制
2.
Preparation and properties of electroless composite plating of nickel-phosphous-potassium titanate whisker;
镍-磷-钛酸钾晶须化学复合镀层的制备及性能
3.
A study on the properties of the potassium titanate whiskers—PTFE composites;
钛酸钾晶须增强聚四氟乙烯复合材料性能的研究
5)  dithizone-modified sodium trititanate whisker
双硫腙修饰的三钛酸钠晶须
1.
The dithizone-modified sodium trititanate whisker prepared with immersion method was used as adsorbent to enrich and separate Pb(Ⅱ).
利用浸渍法制备双硫腙修饰的三钛酸钠晶须,再以其为吸附剂富集分离Pb(Ⅱ)。
6)  potassium titanate whiskers
六钛酸钾晶须
1.
The cost-effective potassium titanate whiskers are artificial fibers with high performance.
六钛酸钾晶须是一种高性能、多用途的合成纤维。
补充资料:氮化钛晶须
分子式:
CAS号:

性质:属TiN单晶,对氧化锆和氧化铝等氧化物有良好的化学和物理相容性,热匹配性也好,对非氧化物如氮化硅、碳化钛、碳化硅虽物化相容性也好,但要有保护气才能烧结在一起。制法:(1)TiCl4,N2,H2混合反应而得;(2)用熔融的氰化钠和钠钛合金反应;(3)熔融的氰化钾与TiN或TiO2粉反应;(4)熔融的氰化钾和钛酸钾反应;(5)六钛酸钾在氨下局部反应而得。用于金属基和陶瓷基复合材料增强体。

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