钙钛矿型材料(perovskite-type materials)是一类具有钙钛矿晶体结构的功能材料,具有广泛的应用前景,包括太阳能电池、光电器件、催化剂等领域。它们的优异性能和多功能性使其成为材料科学领域的研究热点。在英语中,表达钙钛矿型材料的专有名词可以使用“perovskite-type”来描述。通过在各种英语语境中使用这一术语,人们可以更准确、清晰地传达关于钙钛矿型材料的信息和研究成果。以下是一些关于钙钛矿型材料的perovskite-type短句和例句,帮助人们更好地理解和应用这一重要材料类型。
钙钛矿型,perovskite-type
1)perovskite-type钙钛矿型
1.Preparation and Catalytic Properties of Perovskite-type Nanometer Catalysts for Methane Oxidative Coupling;甲烷氧化偶联钙钛矿型纳米催化剂的制备及性能测定
2.Nanometerperovskite-type oxide La1 Sr MnO3 was prepared by lemon-acid sol-gel method accessing surface active ag- ent.采用添加表面活性剂的柠檬酸溶胶-凝胶法制备钙钛矿型纳米氧化物La1SrMnO3。
3.Rare-earthperovskite-type oxide is the most promising cathodic material for use in solid oxide fuel cell(SOFC).稀土钙钛矿型氧化物是固体氧化物燃料电池(SOFC)研制中十分有应用前景的阴极材料。
英文短句/例句
plex perouskite type piezoelectric ceramics复合钙钛矿型压电陶瓷
2.Study on the Zirconium-based Dense Perovskite-type Membranes for Oxygen Permeation;新型锆基钙钛矿型致密透氧膜的研究
3.Magnetic and Transport Properties of Layer Perovskite Manganites;层状钙钛矿型锰氧化物的磁性和电性
4.Study on Catalytic Combustion of VOCs Over Perovskite Catalysts;钙钛矿型催化剂对VOCs催化燃烧的研究
5.The Macroscopic Effect and Application of Perovskite Ferroelectrics;钙钛矿型铁电体的宏观效应及其应用
6.The Investigation of Thermoelectrical Properties of Perovskite Structure of Rare-Earth Cobalt Oxides System钙钛矿型稀土钴酸盐的热电性质研究
7.Study on Photocatalytic Activity of the Perovskite Type Ca_xSr_(1-x)FeO_3钙钛矿型Ca_xSr_(1-x)FeO_3的光催化活性研究
8.Progress on the perovskite-type cathode materials of solid oxide fuel cell钙钛矿型SOFC阴极材料的研究进展
9.Study on Surface Adsorbed Oxygen of Perovskite Composite La_(1-x)Ag_xMnO_3 Nanocrystallites钙钛矿型La_(1-x)Ag_xMnO_3纳米晶表面吸附氧
10.Synthesis and electrical conductivity of novel perovskite-like cathode materials新型类钙钛矿型阴极材料的合成与电性能表征
11.Ultrasonic Studies of Charge Ordering in Perovskite-type Iron Oxides;钙钛矿型铁氧化物中电荷有序现象的超声研究
12.Study on Preparation, Structure and Properties of Perovskite Manganites;钙钛矿型锰基氧化物的制备、结构及性能研究
13.Theoretical Studies on Dielectric Properties in Complex Perovskite-type Relaxor Ferroelectrics;复合钙钛矿型弛豫铁电体介电性质的理论研究
14.The Study of the Doping Effects in Rare Earth Manganites of Perovskite System;钙钛矿型稀土锰氧化物中掺杂效应的研究
15.Research on Hydrothermal Synthesis of Perovskite-Based LSMO CMR;钙钛矿型La_(1-x)Sr_xMnO_3庞磁阻材料水热合成的研究
16.The Study on Catalytic Combustion Properties of Methane over Double Perovskite Catalysts;双层钙钛矿型甲烷燃烧催化剂的制备及表征
17.Hydrothermal Synthesis and Characterization of the Perovskite Manganites;钙钛矿型复合锰氧化物的水热合成与表征
18.Research on Automotive Exhaust Catalyst of Nano Rare Earth Peroskite-type;纳米稀土钙钛矿型汽车尾气净化催化剂的研究
相关短句/例句
Perovskite[p?"r?vz,kait]钙钛矿型
1.Research on the Poison Resistance and Stabilization of thePerovskite Catalysts for VOCs Catalytic Combustion;钙钛矿型催化剂对VOCs催化燃烧的抗毒性和稳定性研究
2.A brief overview of the state of the art of HTPC with perovskite type and complex perovskite type structure is given.介绍了钙钛矿型和复合钙钛矿型化合物的结构、常用的制备方法和传导性质 ,详细分析了其传导机理 ,评述了其研究进展和在气体传感器、固体燃料电池、有机物加氢和脱氢以及常压电化学合成氨等方面的应用 ,展望了应用前景和发展趋
3.A series of perovskite-type composite oxides Ba-Zr-O,La-Ce-O, Sr-Ce-O, Mg-Ce-O,Ba-Ce-O,La-Zr-O,La-Co-O and Ba-Co-O have been prepared by improvement sol-gel method .本文以改进的溶胶-凝胶法制备了几种新型钙钛矿型复合氧化物Ba-Zr-O、La-Ce-O、Sr-Ce-O、Mg-Ce-O、Ba-Ce-O,La-Zr-O并与常见的La-Co-O、Ba-Co-O复合氧化物催化剂进行了比较研究,同时又以微乳法、共沉淀法制备了其中某些催化剂,研究了它们的物理化学性能和催化性能。
3)Perovskite type钙钛矿型
1.Nano and large size perovskite type composite oxides LaMnO 3+λ were prepared by sol gel and precipitate method, respectively, and their catalytic properties for combustion of methane have also been studied.采用溶胶-凝胶方法和沉淀法制备了纳米级和大颗粒钙钛矿型复合氧化物LaMnO3+λ,并对其催化甲烷完全氧化性能进行了研究。
2.Nano-perovskite type rare earth mixed oxides La1-xPbxCoO3 were synthesized by sol-gel method.采用溶胶-凝胶法制备了钙钛矿型稀土复合氧化物La1-xPbxCoO3。
4)perovskite CaTiO3钙钛矿型钛酸钙
5)LaCoO_3钙钛矿型LaCoO3
6)perovskite-type LaGaO_3钙钛矿型LaGaO3
1.The progress in the dopedperovskite-type LaGaO_3 based solid electrolyte with high oxygen-ionic conductivity in recent years was reviewed.综述了具有较高氧离子电导率的掺杂钙钛矿型LaGaO3基固体电解质近年来的研究进展。
延伸阅读
钙钛矿型铁氧体分子式:CAS号:性质:又称钙钛矿型铁氧体。具有钙钛矿型结构的铁氧体。其化学式为AFeO3(式中A为Y或一部分其他稀土元素)。其晶体结构与天然钙钛石(CaTiO3)相同,属正交晶系。具有单轴各向异性。饱和磁化强度很低,约为(4.9~11.4)×10-4T,其泡径(磁泡处于稳定状态时的直径)较大,迁移率较低。用它制作的磁泡存储器具有非挥发性、抗辐射能力强。利用薄膜技术可实现集成化,在密度与半导体存储器相同情况下功耗约可低2~3个数量级。主要用作磁泡材料。
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