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1)  high photocatalytic activity
高光催化活性
2)  Improving catalytic activity
提高光催化活性
3)  photocatalytic activity
光催化活性
1.
Recent developments in the photocatalytic activity of nonmetal-doped TiO_2 under visible light irradiation;
非金属元素掺杂TiO_2的可见光催化活性研究进展
2.
Analysis on photocatalytic activity and surface energy band structure of(Ag,Nd)/TiO_2 nanometer materials;
(Ag,Nd)/TiO_2纳米材料光催化活性及其表面能带结构分析
3.
Study on photocatalytic activity of nano-TiO_2 prepared by sol-gel method;
溶胶-凝胶法制备纳米TiO_2及其光催化活性的研究
4)  photo catalytic activity
光催化活性
1.
At the same time,we use the reactive brilliant red X-3B wastewater as the degradation object to test the Immobilized TiO2 activator photo catalytic activity.
目的研究TiO2的光催化活性,制备可悬浮的负载型TiO2光催化剂,并以活性艳红X-3B有机染料为降解对象来检验光催化剂的光催化活性。
2.
The photo catalytic activity of the TiO 2 thin films is enhanced with the increase of the coating cycles or.
对甲基橙水溶液的光催化降解实验表明 :在一定范围内 ,随着TiO2 镀层层数的增加 ,薄膜的光催化活性增强 ;且相同条件下 ,以玻璃纤维为基体的薄膜的光催化活性明显优于以玻璃片为基体的薄膜的活性 。
5)  photocatalytic
光催化活性
1.
Preparation of K_4Nb_6O_(17) by citric-complex method and itsphotocatalytic activity for water splitting into hydrogen;
配合法制备K_4Nb_6O_(17)及其光催化活性的研究
2.
The photocatalytic activity of K_4Nb_6O_(17) and K_4Nb_6O_(17) doped with Fe~(3+), Cr~(3+) were investigated with methanol as electron donor and Pt as promoter catalyst under ~400 nm UV irradiation.
在甲醇为电子给体、Pt为助催化剂的情况下,研究了K4Nb6O17及Fe3+,Cr3+掺杂的K4Nb6O17作为催化剂在~400nm紫外辐射下分解产生氢的光催化活性,并讨论了引起3种催化剂活性差异的原因。
3.
The photocatalytic activities of K_4Nb_6O_(17) and K_4Nb_6O_(17) doped with Ni~(2+),Co~(3+),Mn~(4+),Cu~(2+) are investigated with methanol as electron donor and Pt as promoter catalyst under ~400nm UV irradiation.
在甲醇为电子给体、P(?)为助催化剂的情况下,研究了 K_4Nb_6O_(17)及 Ni~(2+)、Co~(3+)、Mn~(4+)、Cu~(2+)掺杂的 K_4Nb_6O_(17)作为催化剂在约400nm 紫外辐射下分解水产氢的光催化活性,并讨论了引起催化剂活性差异的原因。
6)  photo-catalytic activity
光催化活性
1.
Titanium dioxide films prepared by micro-plasma qxidation method and its photo-catalytic activity;
微等离子体氧化法制备TiO_2膜的光催化活性研究
2.
Study on photo-catalytic activity of titanium dioxide thin films prepared by micro-plasma oxidation method;
微等离子体氧化法在TiO_2膜的光催化活性研究
3.
The nanosized TiO2 in the rutile phase was doped with alumina to suppress its photo-catalytic activity.
为降低金红石相纳米TiO2的光催化活性,利用氧化铝对其进行高温掺杂处理。
补充资料:高光
1.汉宫殿名。 2.汉高祖和汉光武帝的并称。 3.极为明亮的光。
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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