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首页> 外文期刊>CERAMICS INTERNATIONAL >Structural, microstructural, ferroelectric and photoluminescent properties of praseodymium modified Ba0.98Ca0.02Zr0.02Ti0.98O3 ceramics
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Structural, microstructural, ferroelectric and photoluminescent properties of praseodymium modified Ba0.98Ca0.02Zr0.02Ti0.98O3 ceramics

机译:镨的结构,微观结构,铁电和光致发光性能改性Ba0.98Ca0.02ZR0.02Ti0.98O3陶瓷

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摘要

The 'x' wt% (x = 0, 0.02, 0.04 and 0.06) Pr6O11 modified Ba0.98Ca0.02Zr0.02Ti0.98O3 (BCZT - x Pr) piezoelectric ceramics have been fabricated by the solid state reaction method with sintering at 145 degrees C (x = 0) and 1350 degrees C (0.02 = x = 0.06) for 2 h. The impact of Pr concentration on the structural, microstructural, photoluminescence and ferroelectric properties has been systematically investigated. The x-ray diffraction (XRD) patterns revealed the co-existence of tetragonal and orthorhombic phases at room temperature upto x = 0.04 Pr concentration. The grain size was found to decrease upto x = 0.04 Pr content. Room temperature Raman spectroscopy results were consistent with the XRD results. The photoluminescence (PL) spectra showed significant emissions consisting of strong blue (489 nm), green (528 nm) and red (649 nm) wavelengths. The emission intensities of PL spectrum were strongly Pr concentration dependent and a maximum value was obtained for 0.04 Pr modified BCZT ceramic. Further, a large remnant polarization (2P(r) similar to 13 mu C/cm(2)) and low coercive field (E-c similar to 22 V/cm) were obtained for BCZT - 0.04 Pr ceramic. The crystal structure and microstructure affect the photoluminescence and ferroelectric properties. Such properties of 0.04 Pr modified BCZT ceramic make it the potential candidate for novel integrated and multifunctional devices.
机译:“X”WT%(x = 0,0.02,0.04和0.06)PR6O11改性Ba0.98CA0.02ZR0.02TI0.98O3(BCZT-X PR)压电陶瓷由固态反应方法在145度下烧结制造C(x = 0)和1350℃(0.02℃)2小时。已经系统地研究了PR浓度对结构,微观结构,光致发光和铁电性能的影响。 X射线衍射(XRD)图案揭示了在室温下的四方和正交相的共存,高达X = 0.04 Pr浓度。发现晶粒尺寸降低X = 0.04份含量。室温拉曼光谱结果与XRD结果一致。光致发光(PL)光谱显示出具有强烈的蓝色(489nm),绿色(528nm)和红色(649nm)波长的显着排放。 PL光谱的发射强度强烈浓度依赖性,得到最大值,得到0.04Pr改性BCZT陶瓷的最大值。此外,对于BCZT-0.04 PR陶瓷,获得了具有较大的剩余偏振(类似于13μc/ cm(2))和低矫顽场(E-C类似于22V / cm的E-C)。晶体结构和微观结构影响光致发光和铁电性能。 0.04 Pr改性BCZT陶瓷的这种性能使其成为新型集成和多功能设备的潜在候选者。

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