Ahmad Mohamad M, Alshoaibi Adil, Ansari Sajid Ali, Kayed Tarek S, Khater Hassan A, Kotb Hicham Mahfoz
Department of Physics, College of Science, King Faisal University, P.O. Box 400, Al-Ahsa 31982, Saudi Arabia.
Department of Physics, Faculty of Science, The New Valley University, El-Kharga 72511, Egypt.
Materials (Basel). 2022 Apr 27;15(9):3173. doi: 10.3390/ma15093173.
In the current study, BiCuTiO (BCTO) ceramics were prepared by mechanical ball mill of the elemental oxides followed by conventional sintering of the powder without any pre-sintering heat treatments. The sintering temperature was in the range 950-990 °C, which is 100-150 °C lower than the previous conventional sintering studies on BCTO ceramics. All the ceramic samples showed body-centered cubic phase and grain size ≈ 2-6 μm. Sintering temperature in the range 950-975 °C resulted in comparatively lower dielectric loss and lower thermal coefficient of permittivity in the temperature range from -50 to 120 °C. All the BCTO ceramics showed reasonably high relative permittivity. The behavior of BCTO ceramics was correlated with the change in oxygen content in the samples with sintering temperature. This interpretation was supported by the measurements of the energy dispersive x-ray spectroscopy (EDS) elemental analysis and activation energy for conduction and for relaxation in the ceramics.
在当前研究中,通过对元素氧化物进行机械球磨,然后对粉末进行常规烧结(无任何预烧结热处理)来制备BiCuTiO(BCTO)陶瓷。烧结温度在950 - 990℃范围内,这比之前关于BCTO陶瓷的常规烧结研究低100 - 150℃。所有陶瓷样品均呈现体心立方相,晶粒尺寸约为2 - 6μm。950 - 975℃范围内的烧结温度导致在-50至120℃温度范围内具有相对较低的介电损耗和较低的介电常数热系数。所有BCTO陶瓷均表现出相当高的相对介电常数。BCTO陶瓷的行为与样品中氧含量随烧结温度的变化相关。能量色散X射线光谱(EDS)元素分析以及陶瓷中传导和弛豫的活化能测量结果支持了这一解释。