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1)  Sb-doped
Sb掺杂
1.
Research Advances in Sb-doped ZnO Nano-material
Sb掺杂ZnO纳米材料的研究进展
2.
Pure and Sb-doped ZnO nanoparticles were obtained by vapor-phase oxidation from Zn-Sb alloy with different mole ratios as the raw material at the same experimental condition.
以不同摩尔比的Zn~Sb合金为原料,采用加热蒸发氧化-冷凝的方法在相同的试验条件下获得了纯的和Sb掺杂的ZnO纳米颗粒。
3.
Sb-doped ZnO nanocrystallites of average grain size about 15nm were made by the citrate method and made some discussion about the effect of the Sb-doped on the photoluminescence peak of ZnO nanocrystallites.
探讨了Sb掺杂对ZnO光致发光峰的影响。
2)  Sb doping
Sb掺杂
1.
IR study shows that Sb doping and Ce content .
研究结果表明,Sb掺杂和Ce含量的变化对平面氧O(3)沿a轴的伸缩振动和顶点氧O(2)沿z轴的伸缩振动有着不同的影响。
2.
This may reflect the increase in hole localization due to disorder effects resulted from Sb doping.
结果表明 ,Sb掺杂明显抑制超导电性 ,这可能是由于Sb掺杂引起体系无序度增加 ,另一方面 ,Sb在Ru位的掺杂可加剧RuO6 八面体的变形 ,从而使CuO2 面的空穴载流子被磁捕获或磁散射的程度增加 。
3)  Sb-doped SnO2
Sb掺杂SnO_2
1.
Sb-doped SnO2 modifying activated carbon electrode of the electric double-layer capacitors;
Sb掺杂SnO_2修饰双电层电容活性炭电极的研究
4)  Sb doped tin oxide
Sb掺杂的SnO_2
1.
Sb doped tin oxide (ATO) nanometer powders have the characteristics of ordinary ATO and nanosized powders.
Sb掺杂的SnO_2(antimony doped tin oxide,ATO)纳米粉体集中了普通ATO材料和纳米粉体的优点,是一种极具发展潜力的新型导电材料,在显示器件、电致变色、节能建筑玻璃、锂离子电池、太阳能利用、电磁屏蔽、抗静电等诸多领域有着广泛的应用前景。
5)  Sb doped SnO2 thin film
Sb掺杂的SnO2薄膜
6)  Sb-doped SnO_2 film
Sb掺杂SnO2薄膜
1.
Sb-doped SnO_2 films(antimony-doped tin oxide,ATO) were prepared by chemical vapor deposition(CVD) method to analyze the effect of dopant amount on the structure and properties of the ATO films.
采用化学气相沉积法(CVD)制备了Sb掺杂SnO2薄膜(ATO),研究了Sb掺杂量对ATO薄膜结构和性能的影响。
补充资料:d-gluconic acid, 2,4:2',4'-o-(oxydistibylidyne)bis-, sb,sb'-dioxide, trisodium
CAS: 16037-91-5
分子式: C12H18Na2O17Sb2

"中文名称: 葡萄糖酸锑钠;葡酸锑钠;斯锑黑克

英文名称: d-gluconic acid, 2,4:2',4'-o-(oxydistibylidyne)bis-, sb,sb'-dioxide, trisodium;salt, nonahydrate;antimony sodium gluconate;d-gluconic acid, cyclic ester with antimonic acid (h8sb2o9) (2:1), trisodium sodium stibogluconate;solustibosan;solustin

性质描述: 白色或微显淡黄色无定形粉末。易溶于热水,溶于水,不溶于乙醇或乙醚。无臭。水溶液显右旋性。

生产方法: 葡萄糖酸钙与碳酸钠置换反应生成葡萄糖酸钠,然后用三氯化锑进行锑化反应得到葡萄糖酸三价锑钠盐,最后用双氧水氧化为葡萄糖酸锑钠。

用途: 抗黑热病药。
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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