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1)  strontium titanate
钛酸锶
1.
Preparation of nano-sized strontium titanate powder and research on its surface modification process;
纳米钛酸锶粉体制备及其表面改性工艺研究
2.
Determination of potential distribution at grain boundary of strontium titanate bicrystals doped with manganese using electron holograph;
利用电子全息术测量掺锰钛酸锶双晶界面的势场分布
3.
Preparation of strontium titanate nanopowder by chemical coprecipitation method with new technique
化学共沉淀法制备钛酸锶纳米粉体新工艺
2)  SrTiO_3
钛酸锶
1.
Synthesis of Nano-SrTiO_3 from H_2TiO_3 by Hydrothermal Method under Atmospheric Pressure;
以偏钛酸为原料常压水热法合成纳米钛酸锶
2.
Spontaneous Polarization of SrTiO_3 at Low Temperature;
钛酸锶(SrTiO_3)低温时的自发极化
3.
Hydrothermal Synthesis of Surface Modified SrTiO_3 Powders;
水热法制备表面修饰的钛酸锶纳米微粉
3)  SrTiO3
钛酸锶
1.
By using computer controlled ultra-low frequency dielectric spectrometer and HP4124A impendence analyzer, we measured the frequency domain dielectric spectrum of SrTiO3 ceramics in the frequencies from 10-4Hz to 105Hz.
利用计算机自动控制的超低频介电谱测量装置和HP4192A阻抗分析仪,在10-4Hz-105Hz宽达九个数量级的范围内测量了钛酸锶陶瓷的频域介电谱。
2.
Atomic force microscopy(AFM) was applied to study the surface morphology of SrTiO3 substrates which were polished by traditional mechanical and chemical mechanical method respectively.
本文运用原子力显微镜检测传统机械抛光和化学机械抛光以及退火前后的钛酸锶(STO)衬底表面,研究了化学机械抛光和退火对钛酸锶(STO)基片表面形貌的影响,结果表明化学抛光可以使表面粗糙度达到0。
3.
At last the author got the conclusion as below: when the mol proportion of MgTiO3, SrTiO3 and Bi2O3·3TiO2 was 46∶46∶8, with the sintering temperature at 1240℃, the lead-free material w.
钛酸锶铋(SBT)系高压陶瓷电容器材料为主要研究对象,对其掺加不同摩尔百分含量的MgTiO3,通过对陶瓷试样的耐压强度,介电常数,介电损耗等方面的研究分析,所得结果表明:当MgTiO3∶SrTiO3∶Bi2O3·3TiO2=46∶46∶8(摩尔比),烧结温度为1240℃时,可获得材料性能为:Eb≈9。
4)  SrTiO 3
钛酸锶
1.
By using this spectrometer and HP4192A impendence analyzer, we have measured the dielectric spectrum of SrTiO 3 in frequencies from 10 -4 ~10 5Hz.
将该装置与HP4192A阻抗分析仪相结合 ,在 10 -4 Hz至 10 5Hz范围内测量了钛酸锶陶瓷的介电谱 。
5)  barium strontium titanate
钛酸锶钡
1.
The influence of Y_2O_3 additive on the microstructure and dielectric properties of barium strontium titanate ferroelectric ceramics;
掺杂Y_2O_3对钛酸锶钡铁电陶瓷材料显微结构和介电性能的影响
2.
Dielectric tunable properties of Cr-doped barium strontium titanate ceramics;
铬掺杂钛酸锶钡陶瓷的介电调谐性能
3.
Study on dielectric properties of barium strontium titanate thin films;
钛酸锶钡(BST)薄膜的介电性能研究
6)  strontium barium titanate
钛酸锶钡
补充资料:钛酸锶
分子式:
分子量:
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性质:SrTiO3 白色立方晶体。密度5.13。熔点2080℃。具有高折射指数及高介电常数。有毒。是电子工业的重要原料,用以自动调节加热元件和制造具有消磁作用的元器件;还可用作颜料、搪瓷、耐热材料、绝缘材料,其单晶可用作光学材料及人造宝石。由高纯四氯化钛、氯化锶、高纯草酸溶液作用而得。

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