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1)  Li-N-H codoping
Li-N-H共掺杂
2)  Li-Mo co-doping
Li-Mo共掺杂
1.
09)1-yMoyO3 ceramics were prepared by a solid-state reaction method and the effects of Li-Mo co-doping on the phase structures and dielectric properties of the ceramics were investigated.
09)1-yMoyO3陶瓷,并研究了Li-Mo共掺杂对其相结构和介电性能的影响。
3)  Li-N codoping
Li-N共掺技术
4)  N-In codoped
N-In共掺杂
1.
N-In codoped ZnO thin films on quartz glass substrates can be fabricated by using radio frequency magnetron sputtering technique together with the direct implantation of acceptor dopants(nitrogen).
利用射频磁控溅射结合离子注入的方法在石英玻璃衬底上成功地实现了ZnO薄膜的N-In共掺杂,借助于XRD、霍耳测试、透射谱测试等手段分析了不同退火条件下对ZnO薄膜的结构及光电性质的影响。
5)  N-codoped
N-共掺杂
1.
Cr,N-codoped tiatanate nanotubes with visible-light response were synthesized by hydrothermal process by using Cr,N-codoped TiO_2 as precursor.
以低温溶剂热法合成的 Cr,N-共掺杂的 TiO_2为前驱体,采用水热法合成了可见光响应 Cr。
6)  Li doping
Li掺杂
1.
Effect of Li doping on phase structures and electrochemical properties of rare earth-based AB_5 hydrogen storage alloy;
Li掺杂对AB_5型稀土贮氢合金相结构和电化学性能的影响
补充资料:[3-(aminosulfonyl)-4-chloro-N-(2.3-dihydro-2-methyl-1H-indol-1-yl)benzamide]
分子式:C16H16ClN3O3S
分子量:365.5
CAS号:26807-65-8

性质:暂无

制备方法:暂无

用途:用于轻、中度原发性高血压。

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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