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Structural Characterizations and Dielectric Properties of Sphere- and Rod-Like PbTiO 3 Powders Synthesized via Molten Salt Synthesis

机译:熔融盐合成的球形和棒状PbTiO 3 粉末的结构表征和介电性能

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By reaction of PbC~(2)O~(4)and TiO~(2)in the eutectic NaCl-KCl salts, both sphere- and rod-like PbTiO~(3)(PTO) powders were synthesized via molten salt synthesis (MSS) and template MSS methods, respectively. X-ray diffraction patterns reveal that all the PTO powders crystallize in a tetragonal phase structure. Increasing the molar ratio of PbC~(2)O~(4):TiO~(2):NaCl:KCl from 1:1:10:10 to 1:1:60:60 in the MSS process has little effect on the sphere-like morphology of the PTO powders synthesized at 950?°C for 5?h. Large-scale polycrystalline rod-like PTO powders with diameters of 480?nm–1.50?μm and lengths up to 10?μm were synthesized at 800?°C for 5?h by template MSS method, where the rod-like anatase TiO~(2)precursors were used as templates and the molar ratio of PbC~(2)O~(4):TiO~(2):NaCl:KCl was equal to 1:1:60:60. X-ray energy dispersive spectroscopy spectra reveal that all the PTO powders are composed of Pb, Ti, and O elements, and the measured Pb:Ti atomic ratios are close to 1:1. In the template MSS process, the molten salt content plays an important role in forming the rod-like PTO powders. Under low molten salt content, the rod-like PTO powders cannot be synthesized even if the rod-like TiO~(2)templates are used. In addition, prolonging the reaction time suppressed the formation of rod-like PTO powders but promoted the formation of sphere-like PTO nanoparticles. The dielectric properties the sphere- and rod-like PTO powders were comparatively investigated. At room temperature, the dielectric constant and dielectric loss of the spherical PTO powders synthesized by MSS method with the molar ratio of PbC~(2)O~(4):TiO~(2):NaCl:KCl equal to 1:1:30:30 were ~?340 and 0.06 (measured at 10_(6)?Hz), respectively. The corresponding values for the rod-like PTO powders synthesized by template MSS method with the molar ratio of PbC~(2)O~(4):TiO~(2):NaCl:KCl equal to 1:1:60:60 were 140 and 0.08, respectively. The present results demonstrate the sphere-like PTO powders have better dielectric properties, which have promising applications in the fields of multilayer capacitors and resonators.
机译:通过PbC〜(2)O〜(4)和TiO〜(2)在共晶NaCl-KCl盐中的反应,通过熔融盐合成法合成球形和棒状PbTiO〜(3)(PTO)粉末( MSS)和模板MSS方法。 X射线衍射图表明,所有的PTO粉末都以四方相结构结晶。在MSS工艺中,将PbC〜(2)O〜(4):TiO〜(2):NaCl:KCl的摩尔比从1:1:10:10增加到1:1:60:60几乎没有影响。在950?C下合成5?h的PTO粉末呈球形。采用模板MSS法在800℃下合成5?h,合成了直径480?nm-1.50?μm,长度达10?μm的大型多晶棒状PTO粉末,其中棒状锐钛矿TiO〜以(2)前体为模板,PbC〜(2)O〜(4):TiO〜(2):NaCl:KCl的摩尔比为1:1:60:60。 X射线能谱仪显示,所有PTO粉末均由Pb,Ti和O元素组成,测得的Pb:Ti原子比接近1:1。在模板MSS工艺中,熔融盐含量在形成棒状PTO粉末中起着重要作用。在低熔盐含量下,即使使用棒状TiO〜(2)模板也无法合成棒状PTO粉末。另外,延长反应时间抑制了棒状PTO粉末的形成,但是促进了球状PTO纳米颗粒的形成。比较研究了球形和棒状PTO粉末的介电性能。室温下,MSS法合成的球形PTO粉末的介电常数和介电损耗,PbC〜(2)O〜(4):TiO〜(2):NaCl:KCl的摩尔比为1:1: 30:30分别为〜340和0.06(在10_(6)?Hz下测量)。采用模板MSS法合成的棒状PTO粉体,其PbC〜(2)O〜(4):TiO〜(2):NaCl:KCl的摩尔比为1:1:60:60的相应值分别为分别为140和0.08。目前的结果表明,球形PTO粉末具有更好的介电性能,在多层电容器和谐振器领域具有广阔的应用前景。

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