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1)  La~(3+)doped lead magnesium niobate
掺镧铌镁酸铅
1.
With the help of quantitative phase analysis theory of X-ray,ordered volume propor- tion in La~(3+)doped lead magnesium niobate(PLMN)ceramics is given.
本文从X光定量相分析理论,给出了利用X光衍射强度来标定掺镧铌镁酸铅(PLMN)陶瓷有序体积分数的一种方法,并将它推广到同种类型的其它材料中。
2)  lead magnesium niobate
铌镁酸铅
1.
The complex perovskite relaxor ferroelectric ceramics, such as lead magnesium niobate (Pb(Mg_(1/3)Nb_(2/3))O_3 ,abbreviated PMN), have excellent dielectric and ferroelectric properties.
以铌镁酸铅Pb(Mg_(1/3)Nb_(2/3))O_3(简称PMN)为代表的铅基复合钙钛矿结构弛豫型铁电陶瓷,以其优良的介电、铁电性能,在多层电容器(MLCC)和高压高介电常数电容器等诸多方面,正越来越被各国学者所关注,其研究和应用都具有十分广阔的前景。
3)  Pb(Mg1/3Nb2/3)O3
铌镁酸铅
1.
Pb(Mg1/3Nb2/3)O3 ceramics were prepared by reaction-sintering process.
采用反应烧结工艺制备铌镁酸铅陶瓷,研究不同Mg源反应物对陶瓷物相组成和微观结构的影响。
4)  PMN
铌镁酸铅
1.
Effects of nickel electroplating on the degradation of electrical properties of PMN based ferroelectrics were studied.
针对铌镁酸铅 (PMN)基弛豫铁电陶瓷电镀镍后性能失效行为 ,采用介温谱、绝缘电阻测量及高温退火方法进行了研究。
2.
2O3(designated as PMNT80/20)ferroelectric ceramics have been carefully measured as a function of temperature.
通过对掺钛铌镁酸铅铁电陶瓷Pb(Mg1/3Nb2/3)0。
5)  MgO:LiNbO_3
掺镁铌酸锂
1.
STUDY ON PERIODICALLY POLED CHARACTERISTICS OF MgO:LiNbO_3 AND SECOND HARMONIC GREEN LIGHT GENERATION;
高掺镁铌酸锂晶体周期极化及倍频特性研究
2.
Research on the submicron domain inversion structure of MgO:LiNbO_3;
掺镁铌酸锂亚微米结构畴反转的研究
6)  PLT
掺镧钛酸铅
1.
Ferroelectric lanthanum-doped lead titanate (PLT) thin films have been fabricatedon Si(100)substrates by RF magnetron sputtering.
用射频磁控溅射法在Si(100)衬底上制备了掺镧钛酸铅(PLT)铁电薄膜。
2.
1))TiO_3,PLT10],were grown by RF magnetron sputtering,on Si(100) and Pt/Ti/SiO_2/Si(100) substrates under the same growth conditions,respectively.
采用射频磁控溅射技术,使用相同的工艺条件在Si(100)基底和Pt/Ti/SiO2/Si(100)基底上生长了掺镧钛酸铅[(Pb0。
3.
1))TiO_3,PLT10]ferroelectric thin films were grown on Si(100) and Pt/Ti/SiO_2/Si(100) substrates by RF magnetron sputtering.
采用射频磁控溅射技术在Si(100)基底和Pt/Ti/SiO2/Si(100)基底上生长了掺镧钛酸铅[(Pb0。
补充资料:透明偏铌酸铅钡镧陶瓷
分子式:
CAS号:

性质:又称透明PBLN陶瓷。是一种透明铁电陶瓷,主要组分为(Pb1-yBa1-y)1-xLaxnb2-x/5O6。具有高的电光效应,一次电光效应为7.45×10-10M/V,二次电光效应为2.09×10-16M2/V2。以高纯三氧化二镧、五氧化二铌(Nb2O5)、β-氧化铅(β-PbO)、碳酸钡为原料,在1300℃下通氧热压烧结而成。主要用于电光源装置和用作原子能反应堆材料。

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