The transition from paraelectric phase to ferroelectric phase for SrBi2Ta2O9(SBT) nanoparticles has been investigated by high-temperature X-ray diffraction,temperature-dependent dielectric and specific heat measuremen...The transition from paraelectric phase to ferroelectric phase for SrBi2Ta2O9(SBT) nanoparticles has been investigated by high-temperature X-ray diffraction,temperature-dependent dielectric and specific heat measurements.The crystal structure of SBT nanoparticles at room temperature is orthogonal with an A21am symmetry.The high-temperature phase(>350 ℃) exhibits a tetragonal structure(I4/mmm).There are two anomalies in all samples of SBT nanoparticles from the dielectric and specific heat curves.The high-temperature anomaly is frequency-dependent,which is a typical characteristic of relaxor ferroelectric phase transition.However,the low-temperature anomaly is heating-rate dependent,which is related to structural relaxation.These two phase transitions are accompanied with the changes in local symmetry,which is related to disordered atoms that are induced by size effects in SBT nanoparticles.展开更多
SrBi2.2 Ta2O9(SBT) thin film with thickness of 2μm was successfully prepared by sol-gel method, using strontium acetate semihydrate [Sr(CH3COO)2·1/2H2O] and bismth subnitrate [BiO(NO3)], and tantalum ethox...SrBi2.2 Ta2O9(SBT) thin film with thickness of 2μm was successfully prepared by sol-gel method, using strontium acetate semihydrate [Sr(CH3COO)2·1/2H2O] and bismth subnitrate [BiO(NO3)], and tantalum ethoxide [Ta(OCH2CH3)5] as source materials, glacial acetic and ethylene glycol as solvents. The X-ray diffraction(XRD) and transmission electron microscope(TEM) results indicate that SBT layer-perovskite phase obtained has to be single phase, SBT thin film is formed after being annealed at 800℃ for 1min. The typical hysteresis loop of SBT thin film on Pt/Ti/SiO2/Si is obtained, and the measured polarization value of the SBT thin film is 4.2μC/cm2.展开更多
基金Funded by Development Program for Outstanding Young Teachers in Harbin Institute of Technology (HIT,HITQNJS.2007.012)The Natural Scientific Research Innovation Foundation in HIT (HIT.NSRIF.2008.35)the Heilongjiang Postdoctorial Fund (No.LBH-Z06100)
文摘The transition from paraelectric phase to ferroelectric phase for SrBi2Ta2O9(SBT) nanoparticles has been investigated by high-temperature X-ray diffraction,temperature-dependent dielectric and specific heat measurements.The crystal structure of SBT nanoparticles at room temperature is orthogonal with an A21am symmetry.The high-temperature phase(>350 ℃) exhibits a tetragonal structure(I4/mmm).There are two anomalies in all samples of SBT nanoparticles from the dielectric and specific heat curves.The high-temperature anomaly is frequency-dependent,which is a typical characteristic of relaxor ferroelectric phase transition.However,the low-temperature anomaly is heating-rate dependent,which is related to structural relaxation.These two phase transitions are accompanied with the changes in local symmetry,which is related to disordered atoms that are induced by size effects in SBT nanoparticles.
文摘SrBi2.2 Ta2O9(SBT) thin film with thickness of 2μm was successfully prepared by sol-gel method, using strontium acetate semihydrate [Sr(CH3COO)2·1/2H2O] and bismth subnitrate [BiO(NO3)], and tantalum ethoxide [Ta(OCH2CH3)5] as source materials, glacial acetic and ethylene glycol as solvents. The X-ray diffraction(XRD) and transmission electron microscope(TEM) results indicate that SBT layer-perovskite phase obtained has to be single phase, SBT thin film is formed after being annealed at 800℃ for 1min. The typical hysteresis loop of SBT thin film on Pt/Ti/SiO2/Si is obtained, and the measured polarization value of the SBT thin film is 4.2μC/cm2.